Applications of Continuous-Flow Photochemistry in Organic Synthesis, Material Science, and Water Treatment.
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Volker Hessel | Timothy Noël | Dario Cambié | Cecilia Bottecchia | V. Hessel | T. Noël | Natan J W Straathof | D. Cambié | C. Bottecchia | Natan J. W. Straathof
[1] K. Nolan,et al. Photosensitized addition of isopropanol to furanones in a 365 nm UV-LED microchip , 2010, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[2] Ekaterina V. Astrova,et al. Optimization of a Scalable Photochemical Reactor for Reactions with Singlet Oxygen , 2014 .
[3] J. Qin,et al. A high efficiency microfluidic-based photocatalytic microreactor using electrospun nanofibrous TiO2 as a photocatalyst. , 2013, Nanoscale.
[4] Edward J. Wolfrum,et al. Bactericidal Activity of Photocatalytic TiO2 Reaction: toward an Understanding of Its Killing Mechanism , 1999, Applied and Environmental Microbiology.
[5] Yasuhiro Nishiyama,et al. Diastereodifferentiating [2+2] photocycloaddition of chiral cyclohexenone carboxylates with cyclopentene by a microreactor , 2012 .
[6] J. Blanco,et al. Application of the colloidal stability of TiO2 particles for recovery and reuse in solar photocatalysis. , 2003, Water research.
[7] K. Kakiuchi,et al. Highly Efficient Asymmetric Paternò-Büchi Reaction in a Microcapillary Reactor Utilizing Slug Flow , 2015, Journal of Flow Chemistry.
[8] H. Eskandarloo,et al. Fabrication of an inexpensive and high efficiency microphotoreactor using CO2 laser technique for photocatalytic water treatment applications , 2015, Environmental technology.
[9] M. Maggini,et al. Fullerene‐Promoted Singlet‐Oxygen Photochemical Oxygenations in Glass‐Polymer Microstructured Reactors , 2008 .
[10] Robert F Shepherd,et al. Microfluidic assembly of homogeneous and Janus colloid-filled hydrogel granules. , 2006, Langmuir : the ACS journal of surfaces and colloids.
[11] G. Hadziioannou,et al. Microfluidic synthesis and assembly of reactive polymer beads to form new structured polymer materials , 2008 .
[12] M. Balcı. Bicyclic endoperoxides and synthetic applications , 1981 .
[13] T. Montagnon,et al. The power of singlet oxygen chemistry in biomimetic syntheses , 2006 .
[14] Shuj Kobayashi,et al. Flow “Fine” Synthesis: High Yielding and Selective Organic Synthesis by Flow Methods , 2015, Chemistry, an Asian journal.
[15] Matthias Wessling,et al. Porous Photocatalytic Membrane Microreactor (P2M2): A new reactor concept for photochemistry , 2011 .
[16] Andrew deMello,et al. Microscale reactors: nanoscale products. , 2004, Lab on a chip.
[17] Peter H. Seeberger,et al. Visible-light-mediated photochemistry: accelerating Ru(bpy)32+-catalyzed reactions in continuous flow , 2012 .
[18] Jeremiah A. Johnson,et al. Improving photo-controlled living radical polymerization from trithiocarbonates through the use of continuous-flow techniques. , 2015, Chemical communications.
[19] E. Kumacheva,et al. Continuous microfluidic reactors for polymer particles. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[20] H. Stone,et al. Formation of dispersions using “flow focusing” in microchannels , 2003 .
[21] G. Schenck. Probleme präparativer Photochemie , 1952 .
[22] Yvonne Freeh,et al. Handbook Of Synthetic Photochemistry , 2016 .
[23] S. Gligorovski,et al. Environmental Implications of Hydroxyl Radicals ((•)OH). , 2015, Chemical reviews.
[24] S. Harutyunyan,et al. Light on the horizon? Catalytic enantioselective photoreactions , 2013 .
[25] Jurriaan Huskens,et al. Supported Catalysis in Continuous-Flow Microreactors , 2015 .
[26] Dong‐Pyo Kim,et al. Photocatalytic reaction using novel inorganic polymer derived packed bed microreactor with modified TiO2 microbeads , 2011 .
[27] Dong‐Pyo Kim,et al. Triple-channel microreactor for biphasic gas–liquid reactions: Photosensitized oxygenations , 2011, Beilstein journal of organic chemistry.
[28] Assunta Marrocchi,et al. Flow approaches towards sustainability , 2014 .
[29] G. Li Puma,et al. A novel microfluidic approach for extremely fast and efficient photochemical transformations in fluoropolymer microcapillary films. , 2015, Chemical communications.
[30] C. Pulgarin,et al. Effect of Fenton and photo-Fenton reactions on the degradation and biodegradability of 2 and 4-nitrophenols in water treatment , 1994 .
[31] Guido Koch,et al. Batch versus flow photochemistry: a revealing comparison of yield and productivity. , 2014, Chemistry.
[32] P. Ciambelli,et al. Heterogeneous Photo-Fenton Oxidation of Organic Pollutants on Structured Catalysts , 2012 .
[33] H. D. Roth. The Beginnings of Organic Photochemistry , 1989 .
[34] John William Strutt,et al. XV. On the light from the sky, its polarization and colour , 1871 .
[35] Masoud Rahimi,et al. Using Y-shaped microreactor for continuous decolorization of an Azo dye , 2014 .
[36] X. M. Zhang,et al. Optofluidic planar reactors for photocatalytic water treatment using solar energy. , 2010, Biomicrofluidics.
[37] Yu-Cheng Lin,et al. Using a cross-flow microfluidic chip for monodisperse UV-photopolymerized microparticles , 2009 .
[38] A. Kirschning,et al. [3 + 2]-Cycloadditions of nitrile ylides after photoactivion of vinyl azides under flow conditions , 2013, Beilstein journal of organic chemistry.
[39] Robert Bruce Lindsay,et al. On the Light from the Sky, its Polarization and Colour (1871) , 1970 .
[40] J. Herrmann,et al. Heterogeneous photocatalysis: fundamentals and applications to the removal of various types of aqueous pollutants , 1999 .
[41] M. A. Ischay,et al. Visible light photocatalysis as a greener approach to photochemical synthesis. , 2010, Nature chemistry.
[42] M. Fischer. Industrial Applications of Photochemical Syntheses , 1978 .
[43] Xuming Zhang,et al. Microfluidic photoelectrocatalytic reactors for water purification with an integrated visible-light source. , 2012, Lab on a chip.
[44] P. Seeberger,et al. Automated solid-phase synthesis of chondroitin sulfate glycosaminoglycans. , 2013, Angewandte Chemie.
[45] A. Albini,et al. The photochemistry of the N-oxide function , 1984 .
[46] Yu Wang,et al. Microfluidic reactors for photocatalytic water purification. , 2014, Lab on a chip.
[47] J. Wegner,et al. Ten Key Issues in Modern Flow Chemistry. , 2011 .
[48] J. Pignatello,et al. Activation of hydrogen peroxide by iron(III) chelates for abiotic degradation of herbicides and insecticides in water , 1993 .
[49] Steven V Ley,et al. Flow chemistry meets advanced functional materials. , 2014, Chemistry.
[50] G. Mie. Beiträge zur Optik trüber Medien, speziell kolloidaler Metallösungen , 1908 .
[51] Robert C. R. Wootton,et al. A Microfabricated Nanoreactor for Safe, Continuous Generation and Use of Singlet Oxygen , 2002 .
[52] Huimin Zhao,et al. Fabrication of photocatalytic membrane and evaluation its efficiency in removal of organic pollutants from water , 2006 .
[53] Moses O. Tadé,et al. Light intensity distribution in heterogenous photocatalytic reactors , 2008 .
[54] E. S. Lipinsky,et al. Light-catalyzed Organic Reactions. I. The Reaction of Carbonyl Compounds with 2-Methyl-2-butene in the Presence of Ultraviolet Light , 1954 .
[55] A. Abate,et al. Glass coating for PDMS microfluidic channels by sol-gel methods. , 2008, Lab on a chip.
[56] Danielle M. Schultz,et al. Solar Synthesis: Prospects in Visible Light Photocatalysis , 2014, Science.
[57] N. Pamme,et al. Comparison of photo-oxidation reactions in batch and a new photosensitizer-immobilized microfluidic device. , 2012, Organic letters.
[58] Krzysztof Matyjaszewski,et al. Controlled/living radical polymerization: Features, developments, and perspectives , 2007 .
[59] W. Augustin,et al. Fouling in microstructured devices: a review. , 2015, Chemical communications.
[60] J. Asua,et al. Designing tubular reactors to avoid clogging in high solids miniemulsion photopolymerization , 2013 .
[61] Ryan L. Hartman,et al. Particle Handling Techniques in Microchemical Processes , 2012 .
[62] K. Kakiuchi,et al. Microflow photochemistry: UVC-induced [2 + 2]-photoadditions to furanone in a microcapillary reactor , 2013, Beilstein journal of organic chemistry.
[63] 陈光文,et al. Gas-Liquid Microreaction Technology: Recent Developments and Future Challenges , 2008 .
[64] Michael Oelgemöller,et al. Recent Advances in Microflow Photochemistry , 2011, Molecules.
[65] P. Hirst,et al. A protecting group free synthesis of (+/-)-neostenine via the [5 + 2] photocycloaddition of maleimides. , 2008, The Journal of organic chemistry.
[66] A. Fujishima,et al. TiO2 photocatalysis: Design and applications , 2012 .
[67] M. Trojanowicz. Flow chemistry vs. flow analysis. , 2016, Talanta.
[68] Sixto Malato,et al. The photo-fenton reaction and the TiO2/UV process for waste water treatment − novel developments , 1999 .
[69] N. Xu,et al. Fouling and regeneration of ceramic microfiltration membranes in processing acid wastewater containing fine TiO2 particles , 2002 .
[70] K. Kakiuchi,et al. Microflow photochemistry—a reactor comparison study using the photochemical synthesis of terebic acid as a model reaction , 2012 .
[71] Yuan Zhang,et al. Visible-light photoredox catalysis in flow. , 2012, Angewandte Chemie.
[72] D. Trauner,et al. A roadmap to success in photopharmacology. , 2015, Accounts of Chemical Research.
[73] Soo-young Park,et al. A monolithic and flexible fluoropolymer film microreactor for organic synthesis applications. , 2014, Lab on a chip.
[74] M. Sigman,et al. Application of Advanced Oxidation Process Technologies to Extremely High TOC Containing Aqueous Solutions , 1997 .
[75] I. Davies,et al. A Concise Synthesis of ( S )-?-Fluoroleucine Ethyl Ester , 2006 .
[76] M. Rueping,et al. Continuous flow photocyclization of stilbenes – scalable synthesis of functionalized phenanthrenes and helicenes , 2013, Beilstein journal of organic chemistry.
[77] K. Zeitler,et al. Application of microflow conditions to visible light photoredox catalysis. , 2012, Organic letters.
[78] Mark Pickworth,et al. A practical flow reactor for continuous organic photochemistry. , 2005, The Journal of organic chemistry.
[79] P. Pichat,et al. Standardization protocol of process efficiencies and activation parameters in heterogeneous photocatalysis : relative photonic efficiencies ζr , 1996 .
[80] C. Stephenson,et al. A photochemical strategy for lignin degradation at room temperature. , 2014, Journal of the American Chemical Society.
[81] C. Saint,et al. Recent developments in photocatalytic water treatment technology: a review. , 2010, Water research.
[82] K. Mizuno,et al. Enhanced Efficiency and Regioselectivity of Intramolecular (2π + 2π) Photocycloaddition of 1-Cyanonaphthalene Derivative Using Microreactors , 2005 .
[83] A. Durán,et al. Photodegradation of Reactive Blue 4 solutions under ferrioxalate-assisted UV/solar photo-Fenton system with continuous addition of H2O2 and air injection , 2010 .
[84] M. López-Muñoz,et al. Fe/TiO2/pH interactions in solar degradation of imidacloprid with TiO2/SiO2 photocatalysts at pilot-plant scale , 2006 .
[85] P. Kamat,et al. Photochemistry on surfaces: photodegradation of 1,3-diphenylisobenzofuran over metal oxide particles , 1992 .
[86] K. Jensen,et al. Synthesis of micro and nanostructures in microfluidic systems. , 2010, Chemical Society reviews.
[87] Asterios Gavriilidis,et al. Gas-liquid and gas-liquid-solid microstructured reactors : contacting principles and applications , 2005 .
[88] F. Arndt,et al. Ein Verfahren zur berfhrung von Carbonsuren in ihre hheren Homologen bzw. deren Derivate , 1935 .
[90] Davide Ravelli,et al. Dyes as Visible Light Photoredox Organocatalysts , 2012 .
[91] W. Verboom,et al. Nanocatalysis in Flow. , 2015, ChemSusChem.
[92] H. Fenton,et al. LXXIII.—Oxidation of tartaric acid in presence of iron , 1894 .
[93] P. Watts. Organometallic-Catalysed Gas–Liquid Reactions in Continuous Flow Reactors , 2015 .
[94] Paul Watts,et al. Continuous Flow Reactors, a Tool for the Modern Synthetic Chemist , 2008 .
[95] Rainer E. Martin,et al. Evaluation of a flow-photochemistry platform for the synthesis of compact modules , 2012 .
[96] P. Seeberger,et al. Synthesis of homo- and heteromultivalent carbohydrate-functionalized oligo(amidoamines) using novel glyco-building blocks , 2013, Beilstein journal of organic chemistry.
[97] Craig J. Hawker,et al. Continuous flow synthesis of poly(methyl methacrylate) via a light‐mediated controlled radical polymerization , 2015 .
[98] Axel Günther,et al. Microfluidic Synthesis of Polymer and Inorganic Particulate Materials , 2010 .
[99] Timothy Noël,et al. Cross-Coupling in Flow , 2012 .
[100] D. Kralisch,et al. Investigation of Photon Fluxes within Microstructured Photoreactors Revealing Great Optimization Potentials , 2016 .
[101] L. Prat,et al. Photochemical synthesis of a “cage” compound in a microreactor: Rigorous comparison with a batch photoreactor , 2013 .
[102] T. Bach. Stereoselective Intermolecular [2 + 2]-Photocycloaddition Reactions and Their Application in Synthesis , 1998 .
[103] Graham R Fleming,et al. Lessons from nature about solar light harvesting. , 2011, Nature chemistry.
[104] K. Krawczyk,et al. Formal synthesis of (-)-podophyllotoxin through the photocyclization of an axially chiral 3,4-bisbenzylidene succinate amide ester--a flow photochemistry approach. , 2016, Organic & biomolecular chemistry.
[105] Hazel A. Collins,et al. External regulation of controlled polymerizations. , 2013, Angewandte Chemie.
[106] Jun-ichi Yoshida,et al. Enhancement of Chemical Selectivity by Microreactors , 2005 .
[107] M. Maggini,et al. Shape-selective growth of silver nanoparticles under continuous flow photochemical conditions. , 2013, Chemical communications.
[108] J. Gauthier,et al. Practical and Efficient Route to (S)-γ-Fluoroleucine , 2005 .
[109] J. Aubin,et al. Hydrodynamics and Mass Transfer in Gas‐Liquid Flows in Microreactors , 2012 .
[110] S. Chatani,et al. The power of light in polymer science: photochemical processes to manipulate polymer formation, structure, and properties , 2014 .
[111] Laurent Falk,et al. Performance comparison of micromixers , 2010 .
[112] K. Zeitler,et al. Metal-free, cooperative asymmetric organophotoredox catalysis with visible light. , 2011, Angewandte Chemie.
[113] B. D. De Geest,et al. Complexity from Simplicity: Unique Polymer Capsules, Rods, Monoliths, and Liquid Marbles Prepared via HIPE in Microfluidics , 2013 .
[114] Sundus Erbas-Cakmak,et al. Artificial Molecular Machines , 2015, Chemical reviews.
[115] Yasuyuki Nakamura,et al. Recent progress in the use of photoirradiation in living radical polymerization , 2013 .
[116] Young Joon Kim,et al. Continuous flow photooxygenation of monoterpenes , 2015 .
[117] Y. Horiuchi,et al. Understanding TiO2 photocatalysis: mechanisms and materials. , 2014, Chemical reviews.
[118] A. Hernández-Pérez,et al. A visible-light-mediated synthesis of carbazoles. , 2013, Angewandte Chemie.
[119] Volker Hessel,et al. A convenient numbering-up strategy for the scale-up of gas–liquid photoredox catalysis in flow , 2016 .
[120] H. Löhmannsröben,et al. Continuous synthesis of pyridocarbazoles and initial photophysical and bioprobe characterization , 2013 .
[121] Xiao Yin Mak,et al. Batch and flow photochemical benzannulations based on the reaction of ynamides and diazo ketones. Application to the synthesis of polycyclic aromatic and heteroaromatic compounds. , 2013, The Journal of organic chemistry.
[122] Xue Han,et al. Cleaner continuous photo-oxidation using singlet oxygen in supercritical carbon dioxide. , 2009, Angewandte Chemie.
[123] P. Kamat,et al. Photochemistry on Surfaces. Photodegradation of 1,3‐ Diphenylisobenzofuran Over Metal Oxide Particles. , 1992 .
[124] T. E. Doll,et al. Cross-flow microfiltration with periodical back-washing for photocatalytic degradation of pharmaceutical and diagnostic residues-evaluation of the long-term stability of the photocatalytic activity of TiO2. , 2005, Water research.
[125] Hayato Yoshida,et al. Continuous-flow synthesis of vitamin D3. , 2010, Chemical communications.
[126] Wei Li,et al. Multi-step microfluidic polymerization reactions conducted in droplets: the internal trigger approach. , 2008, Journal of the American Chemical Society.
[127] J. Asua,et al. Miniemulsion Photo-Copolymerization of Styrene/Butyl Acrylate in a Continuous Tubular Reactor , 2014 .
[128] K. Jensen,et al. Multiphase microfluidics: from flow characteristics to chemical and materials synthesis. , 2006, Lab on a chip.
[129] C. Oliver Kappe,et al. Safe generation and use of bromine azide under continuous flow conditions--selective 1,2-bromoazidation of olefins. , 2016, Organic and biomolecular chemistry.
[130] Holger Frey,et al. Microstructured Reactors for Polymer Synthesis: A Renaissance of Continuous Flow Processes for Tailor‐Made Macromolecules? , 2008 .
[131] Roger H. French,et al. Optical properties of Teflon ® AF amorphous fluoropolymers , 2008 .
[132] C. Pulgarin,et al. Supported Fe/C and Fe/Nafion/C catalysts for the photo-Fenton degradation of Orange II under solar irradiation , 2005 .
[133] E. Regalado,et al. Development of a Direct Photocatalytic C—H Fluorination for the Preparative Synthesis of Odanacatib. , 2016 .
[134] M. DeRosa. Photosensitized singlet oxygen and its applications , 2002 .
[135] Peng Wang,et al. Preparation and characterizations of a new PS/TiO2 hybrid membranes by sol–gel process , 2006 .
[136] David A. Nicewicz,et al. Merging Photoredox Catalysis with Organocatalysis: The Direct Asymmetric Alkylation of Aldehydes , 2008, Science.
[137] A. Behr,et al. Thermoregulated Liquid/Liquid Catalyst Separation and Recycling , 2006 .
[138] K. Kakiuchi,et al. Diastereoselective [2+2] Photocycloaddition of a Chiral Cyclohexenone with Ethylene in a Continuous Flow Microcapillary Reactor , 2012, Journal of Flow Chemistry.
[139] Timothy Noël,et al. A Teflon microreactor with integrated piezoelectric actuator to handle solid forming reactions. , 2011, Lab on a chip.
[140] K. P. Cole,et al. Enabling novel photoredox reactivity via photocatalyst selection , 2014 .
[141] N. Hoffmann,et al. Photochemical reactions as key steps in organic synthesis. , 2008, Chemical reviews.
[142] Tai Hyun Park,et al. Design of TiO2 nanoparticle self-assembled aromatic polyamide thin-film-composite (TFC) membrane as an approach to solve biofouling problem , 2003 .
[143] G. Cuny,et al. A Mild, One‐Pot Stadler—Ziegler Synthesis of Arylsulfides Facilitated by Photoredox Catalysis in Batch and Continuous‐Flow. , 2013 .
[144] Shunichi Fukuzumi,et al. Organic synthetic transformations using organic dyes as photoredox catalysts. , 2014, Organic & biomolecular chemistry.
[145] Hiroyuki Nakamura,et al. A simple method of self assembled nano-particles deposition on the micro-capillary inner walls and the reactor application for photo-catalytic and enzyme reactions , 2004 .
[146] Christopher W.K. Chow,et al. Optimisation of an annular photoreactor process for degradation of Congo Red using a newly synthesized titania impregnated kaolinite nano-photocatalyst , 2009 .
[147] Paul N. Devine,et al. An Efficient Chemoenzymatic Approach to (S)-γ-Fluoroleucine Ethyl Ester , 2005 .
[148] Modeling Fentonic advanced oxidation process decolorization of Direct Red 16 using artificial neural network technique , 2012 .
[149] G. Kreisel,et al. Photosensitized oxidation of citronellol in microreactors , 2007 .
[150] H. Sakai,et al. Photochemical reduction of flavone with NaBH4 in batch and micro-channel reactors using excimer lasers , 2008 .
[151] A. Theberge,et al. Microdroplets in microfluidics: an evolving platform for discoveries in chemistry and biology. , 2010, Angewandte Chemie.
[152] Shinichiro Fuse,et al. Synthesis of N-Allyloxycarbonyl 3,5-Dihydroxyphenylglycine via Photochemical Wolff Rearrangement—Nucleophilic Addition Sequence in a Micro-Flow Reactor , 2014, Journal of Flow Chemistry.
[153] C. Kappe,et al. A scalable procedure for light-induced benzylic brominations in continuous flow. , 2014, The Journal of organic chemistry.
[154] M. Tzirakis,et al. Decatungstate as an efficient photocatalyst in organic chemistry. , 2009, Chemical Society reviews.
[155] Angelo Albini,et al. Photocatalysis for the formation of the C-C bond. , 2007, Chemical reviews.
[156] K. P. Cole,et al. A scalable and operationally simple radical trifluoromethylation , 2015, Nature Communications.
[157] J. Saien,et al. Parametric optimization of individual and hybridized AOPs of Fe2+/H2O2 and UV/S2O82− for rapid dye destruction in aqueous media , 2011 .
[158] Jun-ichi Yoshida,et al. Continuous flow synthesis. , 2013, Drug discovery today. Technologies.
[159] N. Ohba,et al. Photocatalytic N-alkylation of benzylamine in microreactors , 2007 .
[160] M. J. Lima,et al. Continuous flow photo-Fenton treatment of ciprofloxacin in aqueous solutions using homogeneous and magnetically recoverable catalysts , 2014, Environmental Science and Pollution Research.
[161] Timothy F. Jamison,et al. Continuous flow multi-step organic synthesis , 2010 .
[162] John M. Beierle,et al. Reversible photocontrol of biological systems by the incorporation of molecular photoswitches. , 2013, Chemical reviews.
[163] Juan C. Scaiano,et al. Modern Molecular Photochemistry of Organic Molecules , 1978 .
[164] D. Keukeleire,et al. Photochemical Strategies for the Construction of Polycyclic Molecules. , 1993 .
[165] J. Pignatello,et al. Chemical treatment of pesticide wastes. Evaluation of Fe(III) chelates for catalytic hydrogen peroxide oxidation of 2,4-D at circumneutral pH , 1992 .
[166] C. Kappe,et al. Singlet-oxygen oxidation of 5-hydroxymethylfurfural in continuous flow. , 2015, ChemSusChem.
[167] K. Katayama,et al. Analysis of photocatalytic reactions using a TiO(2) immobilized microreactor. , 2010, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[168] M. Zourob,et al. A micro-reactor for preparing uniform molecularly imprinted polymer beads. , 2005, Lab on a chip.
[169] C. Guizard,et al. Mesoporous anatase coatings for coupling membrane separation and photocatalyzed reactions , 2005 .
[170] M. Crimmins. Synthetic Applications of Intramolecular Enone-Olefin Photocycloadditions , 1988 .
[171] Seung-Man Yang,et al. Optofluidic encapsulation of crystalline colloidal arrays into spherical membrane. , 2008, Journal of the American Chemical Society.
[172] T. Fukuyama,et al. Continuous Microflow [2 + 2] Photocycloaddition Reactions Using Energy-saving Compact Light Sources , 2011, Journal of Flow Chemistry.
[173] Wei Li,et al. Janus and ternary particles generated by microfluidic synthesis: design, synthesis, and self-assembly. , 2006, Journal of the American Chemical Society.
[174] Steven V. Ley,et al. Flow Chemistry: Intelligent Processing of Gas-Liquid Transformations Using a Tube-in-Tube Reactor , 2015 .
[175] Fernanda G. Finelli,et al. Expanding the toolbox of asymmetric organocatalysis by continuous-flow process. , 2015, Chemical communications.
[176] M. A. Ischay,et al. Efficient visible light photocatalysis of [2+2] enone cycloadditions. , 2008, Journal of the American Chemical Society.
[177] Alberto E. Cassano,et al. Reaction engineering of suspended solid heterogeneous photocatalytic reactors , 2000 .
[178] P. Hanselaer,et al. A batch LED reactor for the photocatalytic degradation of phenol , 2013 .
[179] M. Krivec,et al. The nature of chlorine-inhibition of photocatalytic degradation of dichloroacetic acid in a TiO2-based microreactor. , 2014, Physical chemistry chemical physics : PCCP.
[180] Klavs F Jensen,et al. Tools for chemical synthesis in microsystems. , 2014, Lab on a chip.
[181] D. Tyler McQuade,et al. Polymer chemistry in flow: New polymers, beads, capsules, and fibers , 2006 .
[182] L. Prat,et al. Accurate Measurement of the Photon Flux Received Inside Two Continuous Flow Microphotoreactors by Actinometry , 2014 .
[183] G. Palmisano,et al. Photocatalysis: a promising route for 21st century organic chemistry. , 2007, Chemical communications.
[184] Dhananjay Dendukuri,et al. The Synthesis and Assembly of Polymeric Microparticles Using Microfluidics , 2009 .
[185] Michael Oelgemoeller,et al. Highlights of Photochemical Reactions in Microflow Reactors , 2012 .
[186] Ryan L. Hartman,et al. Deciding whether to go with the flow: evaluating the merits of flow reactors for synthesis. , 2011, Angewandte Chemie.
[187] Joseph W Tucker,et al. Electron-transfer photoredox catalysis: development of a tin-free reductive dehalogenation reaction. , 2009, Journal of the American Chemical Society.
[188] Richard J Ingham,et al. Organic synthesis: march of the machines. , 2015, Angewandte Chemie.
[189] K. Nolan,et al. Photosensitized addition of isopropanol to furanones in a continuous-flow dual capillary microreactor , 2011 .
[190] Quan Yuan,et al. Gas-Liquid Microreaction Technology: Recent Developments and Future Challenges , 2008 .
[191] K. Zeitler. Photoredox catalysis with visible light. , 2009, Angewandte Chemie.
[192] E. Oliveros,et al. Continuous-flow synthesis of polymer nanoparticles in a microreactor via miniemulsion photopolymerization , 2014 .
[193] C. Stephenson,et al. Synthesis of symmetric anhydrides using visible light-mediated photoredox catalysis. , 2012, Organic & biomolecular chemistry.
[194] F. Dumur,et al. Visible light sensitive photoinitiating systems: Recent progress in cationic and radical photopolymerization reactions under soft conditions , 2015 .
[195] Paul Watts,et al. Recent advances in micro reaction technology. , 2011, Chemical communications.
[196] C. Kappe,et al. Aerobic Oxidations in Continuous Flow , 2015 .
[197] L. Falk,et al. Determination of kinetic constants of a photocatalytic reaction in micro-channel reactors in the presence of mass-transfer limitation and axial dispersion , 2011 .
[198] Wolfgang Gernjak,et al. Photo-Fenton Treatment of Olive Mill Wastewater Applying a Combined Fenton/Flocculation Pretreatment , 2007 .
[199] Jae-Hoon Jung,et al. Novel one-pot route to monodisperse thermosensitive hollow microcapsules in a microfluidic system. , 2008, Lab on a chip.
[200] D. MacMillan,et al. Visible light photoredox catalysis with transition metal complexes: applications in organic synthesis. , 2013, Chemical Reviews.
[201] J. Nanubolu,et al. Visible-Light/Photoredox-Mediated sp(3) C-H Functionalization and Coupling of Secondary Amines with Vinyl Azides in Flow Microreactors. , 2016, Chemistry.
[202] F. Wilkinson,et al. Rate constants for the decay and reactions of the lowest electronically excited singlet state of molecular oxygen in solution , 1981 .
[203] Elias Stathatos,et al. Photocatalytic TiO2 films and membranes for the development of efficient wastewater treatment and reuse systems , 2007 .
[204] Volker Hessel,et al. Photochemical transformations accelerated in continuous-flow reactors: basic concepts and applications. , 2014, Chemistry.
[205] Steven V Ley,et al. Flow chemistry syntheses of natural products. , 2013, Chemical Society reviews.
[206] Zdenko Casar,et al. Application of Flow Photochemical Bromination in the Synthesis of a 5-Bromomethylpyrimidine Precursor of Rosuvastatin: Improvement of Productivity and Product Purity , 2013 .
[207] Shuning Li,et al. Multiscale materials from microcontinuous-flow synthesis: ZnO and Au nanoparticle-filled uniform and homogeneous polymer microbeads , 2010, Nanotechnology.
[208] C. Jérôme,et al. Improved photo-induced cobalt-mediated radical polymerization in continuous flow photoreactors , 2015 .
[209] C. Oliver Kappe,et al. Continuous-Flow Technology — A Tool for the Safe Manufacturing of Active Pharmaceutical Ingredients , 2015 .
[210] Dae Kun Hwang,et al. Microfluidic-based synthesis of non-spherical magnetic hydrogel microparticles. , 2008, Lab on a chip.
[211] T. Nisisako,et al. Microfluidic large-scale integration on a chip for mass production of monodisperse droplets and particles. , 2008, Lab on a chip.
[212] Angelo Albini,et al. Green chemistry and photochemistry were born at the same time , 2004 .
[213] V. Hessel,et al. A compact photomicroreactor design for kinetic studies of gas-liquid photocatalytic transformations , 2015 .
[214] J. Blanco,et al. Water disinfection by solar photocatalysis using compound parabolic collectors , 2005 .
[215] N. Hoffmann. Photochemical reactions of aromatic compounds and the concept of the photon as a traceless reagent , 2012, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[216] V. Hessel,et al. Visible Light Photocatalytic Metal-Free Perfluoroalkylation of Heteroarenes in Continuous Flow , 2015, Journal of Flow Chemistry.
[217] Wyatt Vine,et al. Visible-Light Actinometry and Intermittent Illumination as Convenient Tools to Study Ru(bpy)3Cl2 Mediated Photoredox Transformations , 2015, Scientific Reports.
[218] Xue Han,et al. Continuous reactions in supercritical carbon dioxide: problems, solutions and possible ways forward. , 2012, Chemical Society reviews.
[219] A. Ethirajan,et al. Ligand switch in photoinduced copper-mediated polymerization: synthesis of methacrylate–acrylate block copolymers , 2015 .
[220] S. Bondock,et al. The excimer radiation system: a powerful tool for preparative organic photochemistry. A technical note , 2003 .
[221] Volker Hessel,et al. Accelerated gas-liquid visible light photoredox catalysis with continuous-flow photochemical microreactors , 2015, Nature Protocols.
[222] C. Pulgarin,et al. Recent developments in the coupling of photoassisted and aerobic biological processes for the treatment of biorecalcitrant compounds , 2002 .
[223] R. Luque,et al. Liquid phase oxidation chemistry in continuous-flow microreactors. , 2016, Chemical Society reviews.
[224] K. Kakiuchi,et al. Diastereodifferentiating [2+2] Photocycloaddition of a Chiral Cyclohexenone with Cyclopentene in Supercritical Carbon Dioxide Using a Flow Microreactor , 2014, Journal of Flow Chemistry.
[225] R. Cela,et al. Post-column photochemical derivatization in high-performance liquid chromatography , 1999 .
[226] J. Ramsey,et al. Fully integrated glass microfluidic device for performing high-efficiency capillary electrophoresis and electrospray ionization mass spectrometry. , 2008, Analytical chemistry.
[227] Daniel B. Turner,et al. Solar light harvesting by energy transfer: from ecology to coherence , 2012 .
[228] Eugenia Kumacheva,et al. Continuous synthesis of copolymer particles in microfluidic reactors , 2005 .
[229] Theodora W. Greene,et al. Greene's Protective Groups in Organic Synthesis , 2006 .
[230] K. Nolan,et al. From conventional to microphotochemistry: photodecarboxylation reactions involving phthalimides. , 2010, Organic letters.
[231] Jonathan P. McMullen,et al. Palladium-catalyzed amination reactions in flow: overcoming the challenges of clogging via acoustic irradiation , 2011 .
[232] Bernd Eggers,et al. Synthetic Organic Photochemistry , 2016 .
[233] Corey R J Stephenson,et al. The Development of Visible-Light Photoredox Catalysis in Flow. , 2014, Israel journal of chemistry.
[234] C. Serra,et al. Microfluidic‐Assisted Synthesis of Polymer Particles , 2008 .
[235] Cindy Hany,et al. Controlled production of hierarchically organized large emulsions and particles using assemblies on line of co-axial flow devices , 2008 .
[236] O. Shvydkiv,et al. From 'Lab & Light on a Chip' to Parallel Microflow Photochemistry , 2014 .
[237] J. Bolton,et al. The Use of Iron in Advanced Oxidation Processes , 1996 .
[238] T. Montagnon,et al. Using singlet oxygen to synthesize polyoxygenated natural products from furans. , 2008, Accounts of chemical research.
[239] Roger Gorges,et al. Photocatalysis in microreactors , 2004 .
[240] Michael Oelgemöller,et al. Photodecarboxylative benzylations of phthalimide in pH 7 buffer: a simple access to 3-arylmethyleneisoindolin-1-ones , 2010 .
[241] Magnus Rueping,et al. Self‐Optimizing Reactor Systems: Algorithms, On‐Line Analytics, Setups, and Strategies for Accelerating Continuous Flow Process Optimization , 2014 .
[242] W. Kirmse. 100 Years of the Wolff Rearrangement , 2002 .
[243] Abdul Halim Abdullah,et al. Heterogeneous photocatalytic degradation of organic contaminants over titanium dioxide : A review of fundamentals, progress and problems , 2008 .
[244] C. Stephenson,et al. Batch to flow deoxygenation using visible light photoredox catalysis. , 2013, Chemical communications.
[245] V. Hessel,et al. Controlled photocatalytic aerobic oxidation of thiols to disulfides in an energy efficient photomicroreactor , 2015 .
[246] M. I. Maldonado,et al. Decomposition of diclofenac by solar driven photocatalysis at pilot plant scale , 2005 .
[247] G. L. Puma,et al. Direct photolysis of benzoylecgonine under UV irradiation at 254nm in a continuous flow microcapillary array photoreactor , 2016 .
[248] N. Hoffmann. Photocatalysis with TiO2 Applied to Organic Synthesis , 2015 .
[249] Atsushi Sugimoto,et al. Microflow photo-radical reaction using a compact light source: application to the Barton reaction leading to a key intermediate for myriceric acid A , 2009 .
[250] A. Woolley,et al. Ultra-high-speed DNA fragment separations using microfabricated capillary array electrophoresis chips. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[251] Dhananjay Dendukuri,et al. Stop-flow lithography in a microfluidic device. , 2007, Lab on a chip.
[252] Enrico Drioli,et al. Studies on various reactor configurations for coupling photocatalysis and membrane processes in water purification , 2002 .
[253] J. Baeyens,et al. A review of classic Fenton's peroxidation as an advanced oxidation technique. , 2003, Journal of hazardous materials.
[254] Aaron B. Beeler,et al. [2+2] Photocycloaddition of Cinnamates in Flow and Development of a Thiourea Catalyst. , 2015, Angewandte Chemie.
[255] J. Sanders,et al. Deoxygenation of biobased molecules by decarboxylation and decarbonylation - a review on the role of heterogeneous, homogeneous and bio-catalysis. , 2015 .
[256] G. Hwang,et al. Photosensitized Oxygenations of Hexamethylbenzene in Phase Contact Enhanced Microreactor , 2014 .
[257] A. Trovó,et al. Degradation of the herbicide tebuthiuron using solar photo-Fenton process and ferric citrate complex at circumneutral pH , 2007 .
[258] Filip Du Prez,et al. Fabrication of porous "clickable" polymer beads and rods through generation of high internal phase emulsion (HIPE) droplets in a simple microfluidic device , 2009 .
[259] Iván Muñoz,et al. Environmental assessment of different photo-Fenton approaches for commercial reactive dye removal. , 2006, Journal of hazardous materials.
[260] Takashi Takahashi,et al. Continuous-flow synthesis of activated vitamin D3 and its analogues. , 2012, Organic & biomolecular chemistry.
[261] J. Peralta-Hernández,et al. Comparative efficiencies of the decolourisation of Methylene Blue using Fenton’s and photo-Fenton’s reactions , 2009, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[262] V. Musil,et al. Syntheses in the series of Lycopodium alkaloids. IX. Two simple stereospecific syntheses of 12-epi-lycopodine. , 1968, Tetrahedron letters.
[263] B. König,et al. Photocatalytic α‐Oxyamination of Stable Enolates, Silyl Enol Ethers, and 2‐Oxoalkane Phosphonic Esters , 2015 .
[264] Dhananjay Dendukuri,et al. Controlled synthesis of nonspherical microparticles using microfluidics. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[265] T. Fukuyama,et al. Quick Execution of [2+2] Type Photochemical Cycloaddition Reaction by Continuous Flow System Using a Glass-made Microreactor , 2004 .
[266] Minseok Seo,et al. Polymer particles with various shapes and morphologies produced in continuous microfluidic reactors. , 2005, Journal of the American Chemical Society.
[267] Peter H Seeberger,et al. Continuous-flow synthesis of the anti-malaria drug artemisinin. , 2012, Angewandte Chemie.
[268] Joseph W Tucker,et al. Tin-free radical cyclization reactions initiated by visible light photoredox catalysis. , 2010, Chemical communications.
[269] S. Jockusch,et al. Tailoring atropisomeric maleimides for stereospecific [2 + 2] photocycloaddition--photochemical and photophysical investigations leading to visible-light photocatalysis. , 2014, Journal of the American Chemical Society.
[270] T. Fukuyama,et al. Diastereoselective [2 + 2] Photocycloaddition of Chiral Cyclic Enone and Cyclopentene Using a Microflow Reactor System , 2010 .
[271] I. A. Siddiquey,et al. Control of the photocatalytic activity of TiO2 nanoparticles by silica coating with polydiethoxysiloxane , 2008 .
[272] V. Hessel,et al. Metallic nanoparticles made in flow and their catalytic applications in organic synthesis , 2013 .
[273] Julián Blanco,et al. Review of feasible solar energy applications to water processes , 2009 .
[274] J. Fischer,et al. Are micro reactors inherently safe? An investigation of gas phase explosion propagation limits on ethene mixtures , 2012 .
[275] M. A. Pedraz,et al. Photocatalytic oxidation of organic pollutants in water , 1998 .
[276] O. Hansen,et al. Photocatalytic methane decomposition over vertically aligned transparent TiO2 nanotube arrays. , 2011, Chemical communications.
[277] Thomas Junkers. [2+2] Photo-cycloadditions for polymer modification and surface decoration , 2015 .
[278] John D. Nguyen,et al. Engaging unactivated alkyl, alkenyl and aryl iodides in visible-light-mediated free radical reactions , 2012, Nature Chemistry.
[279] R. B. Phillips,et al. Wavelength-controlled production of previtamin D3 , 1982 .
[280] Roberto Andreozzi,et al. Advanced oxidation processes (AOP) for water purification and recovery , 1999 .
[281] B. Samuelsson,et al. Novel reagent system for converting a hydroxy-group into an iodo-group in carbohydrates with inversion of configuration , 1980 .
[282] C. Vila,et al. Continuous Flow Organocatalytic C–H Functionalization and Cross-Dehydrogenative Coupling Reactions: Visible Light Organophotocatalysis for Multicomponent Reactions and C–C, C–P Bond Formations , 2013 .
[283] C. Pulgarin,et al. Sequential helio-photo-Fenton and sonication processes for the treatment of bisphenol A , 2008 .
[284] Dong Pyo Kim,et al. Silicate glass coated microchannels through a phase conversion process for glass-like electrokinetic performance. , 2011, Lab on a chip.
[285] P. Seeberger,et al. Continuous-flow oxidative cyanation of primary and secondary amines using singlet oxygen. , 2014, Angewandte Chemie.
[286] G. Ciamician,et al. THE PHOTOCHEMISTRY OF THE FUTURE. , 1912, Science.
[287] E. Oliveros,et al. Advanced Oxidation Processes for Organic Contaminant Destruction Based on the Fenton Reaction and Related Chemistry , 2006 .
[288] E. Lee-Ruff,et al. Enantiomerically pure cyclobutane derivatives and their use in organic synthesis. , 2003, Chemical reviews.
[289] N. Schore. Transition metal-mediated cycloaddition reactions of alkynes in organic synthesis , 1988 .
[290] P. Seeberger,et al. Continuous photochemical cleavage of linkers for solid-phase synthesis. , 2014, Organic letters.
[291] V. Balzani,et al. Light: A Very Peculiar Reactant and Product. , 2015, Angewandte Chemie.
[292] Dhananjay Dendukuri,et al. A route to three-dimensional structures in a microfluidic device: stop-flow interference lithography. , 2007, Angewandte Chemie.
[293] T. Jamison,et al. Continuous photochemical generation of catalytically active [CpRu]+ complexes from CpRu(η6-C6H6)PF6. , 2011, Organic letters.
[294] Jun-ichi Yoshida,et al. Pauson-Khand reactions in a photochemical flow microreactor. , 2013, Organic letters.
[295] A. Palmieri,et al. Flow Synthesis of Substituted γ‐Lactones by Consecutive Photocatalytic/Reductive Reactions , 2014 .
[296] K. Jähnisch,et al. Photochemical Generation and [4+2]‐Cycloaddition of Singlet Oxygen in a Falling‐Film Micro Reactor , 2005 .
[297] C. Bielawski,et al. Switchable Polymerization Catalysts. , 2016, Chemical reviews.
[298] Toru Torii,et al. Formation of Biphasic Janus Droplets in a Microfabricated Channel for the Synthesis of Shape‐Controlled Polymer Microparticles , 2007 .
[299] John C. deMello,et al. Segmented Flow Reactors for Nanocrystal Synthesis , 2013, Advanced materials.
[300] William Bauta,et al. Development of an Improved Process for Doxercalciferol via a Continuous Photochemical Reaction , 2012 .
[301] W. Ogieglo,et al. Modeling intrinsic kinetics in immobilized photocatalytic microreactors , 2014 .
[302] V. Nekkanti,et al. Influence of Temperature and Penetration Depth on Photopolymerization of n-Butyl Acrylate Using a Narrow Channel Reactor , 2010 .
[303] M. Kärkäs,et al. Enchained by visible light–mediated photoredox catalysis , 2015, Science.
[304] Takehiko Kitamori,et al. Photocatalytic redox-combined synthesis of l-pipecolinic acid with a titania-modified microchannel chip , 2005 .
[305] Steven J. Broadwater,et al. The continuous-flow synthesis of Ibuprofen. , 2009, Angewandte Chemie.
[306] C. Stephenson,et al. Synthesis of (−)-Pseudotabersonine, (−)-Pseudovincadifformine, and (+)-Coronaridine Enabled by Photoredox Catalysis in Flow , 2014, Journal of the American Chemical Society.
[307] Peter H Seeberger,et al. Automated polysaccharide synthesis: assembly of a 30mer mannoside. , 2013, Angewandte Chemie.
[308] J. Köhler,et al. Photochemical Micro Continuous‐Flow Synthesis of Noble Metal Nanoparticles of the Platinum Group , 2015 .
[309] Chien‐Chi Hsiao,et al. Shedding light on Brønsted acid catalysis--a photocyclization-reduction reaction for the asymmetric synthesis of tetrahydroquinolines from aminochalcones in batch and flow. , 2013, Chemical communications.
[310] Hajime Maeda,et al. Intramolecular Photocycloaddition of 2-(2-Alkenyloxymethyl)naphthalene-1-carbonitriles Using Glass-Made Microreactors , 2007 .
[311] T. Bach,et al. Chirality Control in Photochemical Reactions: Enantioselective Formation of Complex Photoproducts in Solution , 2008 .
[312] Michael Oelgemöller,et al. Parallel microflow photochemistry: process optimization, scale-up, and library synthesis. , 2012, Organic letters.
[313] M. Rueping,et al. A combined continuous microflow photochemistry and asymmetric organocatalysis approach for the enantioselective synthesis of tetrahydroquinolines , 2013, Beilstein journal of organic chemistry.
[314] C. Rizzo,et al. Stereocontrolled de Novo Synthesis of beta-2'-Deoxyribonucleosides. , 1996, The Journal of organic chemistry.
[315] Anastasia Voevodin,et al. Development of a Photolabile Amine Protecting Group Suitable for Multistep Flow Synthesis , 2015, Journal of Flow Chemistry.
[316] P. Seeberger,et al. Continuous flow photolysis of aryl azides: Preparation of 3H-azepinones , 2011, Beilstein journal of organic chemistry.
[317] Timothy F Jamison,et al. A three-minute synthesis and purification of ibuprofen: pushing the limits of continuous-flow processing. , 2015, Angewandte Chemie.
[318] Peter H Seeberger,et al. Highly efficient continuous flow reactions using singlet oxygen as a "green" reagent. , 2011, Organic letters.
[319] C. Afonso,et al. 5-Hydroxymethylfurfural (HMF) as a building block platform: Biological properties, synthesis and synthetic applications , 2011 .
[320] Théo P. Gonçalves,et al. An efficient flow-photochemical synthesis of 5H-furanones leads to an understanding of torquoselectivity in cyclobutenone rearrangements. , 2012, Angewandte Chemie.
[321] J. Wegner,et al. Flow Chemistry – A Key Enabling Technology for (Multistep) Organic Synthesis , 2012 .
[322] V. Hessel,et al. A mild and fast photocatalytic trifluoromethylation of thiols in batch and continuous flow , 2014 .
[323] Tadashi Suzuki,et al. N-Alkylation of amines by photocatalytic reaction in a microreaction system , 2008 .
[324] S. Godtfredsen,et al. Ullmann ' s Encyclopedia of Industrial Chemistry , 2017 .
[325] T. Yoon,et al. Spin-Selective Generation of Triplet Nitrenes: Olefin Aziridination through Visible-Light Photosensitization of Azidoformates. , 2016, Angewandte Chemie.
[326] L. Brunsveld,et al. Metal‐Free Photocatalytic Aerobic Oxidation of Thiols to Disulfides in Batch and Continuous‐Flow , 2015 .
[327] V. Guérineau,et al. Photochemical Reactivity of Trifluoromethyl Aromatic Amines: The Example of 3,5-diamino-trifluoromethyl-benzene (3,5-DABTF) , 2005, Photochemistry and Photobiology.
[328] K. Jensen,et al. Photochemical reactions and on-line UV detection in microfabricated reactors. , 2001, Lab on a chip.
[329] Thomas H. Rehm,et al. Photochemical Fluorination Reactions - A Promising Research Field for Continuous-Flow Synthesis , 2016 .
[330] K. Pfoertner. Photochemistry in industrial synthesis , 1990 .
[331] Rainer E. Martin,et al. A convenient photocatalytic fluorination of unactivated C-H bonds. , 2014, Angewandte Chemie.
[332] M. Fagnoni,et al. 1908: Giacomo Ciamician and the concept of green chemistry. , 2008, ChemSusChem.
[333] K. Doerffel. Methodische Konsequenzen des 3σ-Kriteriums: Erkennen und Erweitern methodischer Grenzen in der angewandten Spektroskopie , 1975 .
[334] D. Haddleton,et al. Photo-induced copper-mediated polymerization of methyl acrylate in continuous flow reactors , 2014 .
[335] R. Bauer,et al. The Photo-Fenton Oxidation — A cheap and efficient wastewater treatment method , 1997 .
[336] Burkhard König,et al. Synthetic applications of eosin Y in photoredox catalysis. , 2014, Chemical communications.
[337] B. Alcaide,et al. Exploiting [2+2] cycloaddition chemistry: achievements with allenes. , 2010, Chemical Society reviews.
[338] N. Gritsan,et al. Photochemistry of Azides: The Azide/Nitrene Interface , 2010 .
[339] P. Seeberger,et al. Factors influencing the regioselectivity of the oxidation of asymmetric secondary amines with singlet oxygen. , 2015, Chemistry.
[340] K. Mizuno,et al. Improved efficiency and product selectivity in the photo-Claisen-type rearrangement of an aryl naphthylmethyl ether using a microreactor/flow system , 2012, Research on Chemical Intermediates.
[341] M. A. Ischay,et al. Visible light photocatalysis of intramolecular radical cation Diels-Alder cycloadditions. , 2012, Tetrahedron letters.
[342] A. Fujishima,et al. TiO2 photocatalysis and related surface phenomena , 2008 .
[343] C. Kappe,et al. Continuous flow α-trifluoromethylation of ketones by metal-free visible light photoredox catalysis. , 2014, Organic letters.
[344] Akira Fujishima,et al. Titanium dioxide photocatalysis , 2000 .
[345] Ed de Jong,et al. Hydroxymethylfurfural, a versatile platform chemical made from renewable resources. , 2013, Chemical reviews.
[346] Divergent Total Syntheses of Rhodomyrtosones A and B. , 2015, The Journal of organic chemistry.
[347] N. Anton,et al. Continuous-flow encapsulation of ketoprofen in copolymer microbeads via co-axial microfluidic device: influence of operating and material parameters on drug carrier properties. , 2013, International journal of pharmaceutics.
[348] T. Jamison,et al. Peptide fragment coupling using a continuous-flow photochemical rearrangement of nitrones. , 2013, Angewandte Chemie.
[349] Ryan L. Hartman. Managing Solids in Microreactors for the Upstream Continuous Processing of Fine Chemicals , 2012 .
[350] C. Kappe,et al. Light-Induced C-H Arylation of (Hetero)arenes by In Situ Generated Diazo Anhydrides. , 2015, Chemistry.
[351] C. Kappe,et al. Continuous flow synthesis of β-amino acids from α-amino acids via Arndt–Eistert homologation , 2014 .
[352] G. Whitesides,et al. Mechanism for flow-rate controlled breakup in confined geometries: a route to monodisperse emulsions. , 2005, Physical review letters.
[353] T. Bach,et al. Enantioselective radical cyclisation reactions of 4-substituted quinolones mediated by a chiral template. , 2011, Organic & biomolecular chemistry.
[354] C. Rizzo,et al. Stereocontrolled de novo Synthesis of β-2′-Deoxyribonucleosides. , 1997 .
[355] Marcus Baumann,et al. The synthesis of active pharmaceutical ingredients (APIs) using continuous flow chemistry , 2015, Beilstein journal of organic chemistry.
[356] Magnus Rueping,et al. Online monitoring and analysis for autonomous continuous flow self-optimizing reactor systems , 2016 .
[357] J. Aguado,et al. Solar photocatalytic degradation of dichloroacetic acid with silica-supported titania at pilot-plant scale , 2007 .
[358] A. Caron,et al. Synthesis of a Carprofen Analogue Using a Continuous Flow UV-Reactor , 2014 .
[359] G. Marcì,et al. TiO2-based photocatalysis for organic synthesis , 2010 .
[360] T. Meng,et al. Removal of natural organic matter from water using a nano-structured photocatalyst coupled with filtration membrane. , 2004, Water science and technology : a journal of the International Association on Water Pollution Research.
[361] David Linke,et al. Application of microstructured reactor technology for the photochemical chlorination of alkylaromatics , 2002 .
[362] Klavs F Jensen,et al. Integrated microreactors for reaction automation: new approaches to reaction development. , 2010, Annual review of analytical chemistry.
[363] G. Whitesides,et al. Generation of monodisperse particles by using microfluidics: control over size, shape, and composition. , 2005, Angewandte Chemie.
[364] Ram Awatar Maurya,et al. Visible-light photoredox catalysis: direct synthesis of fused β-carbolines through an oxidation/[3 + 2] cycloaddition/oxidative aromatization reaction cascade in batch and flow microreactors , 2015 .
[365] Ian W. Davies,et al. Discovery and mechanistic study of a photocatalytic indoline dehydrogenation for the synthesis of elbasvir† †Electronic supplementary information (ESI) available: Detailed experimental procedures and characterization data for all new compounds. See DOI: 10.1039/c5sc03350k , 2015, Chemical science.
[366] Jun-ichi Yoshida,et al. Photodimerization of Maleic Anhydride in a Microreactor Without Clogging , 2010 .
[367] Tanja Junkers,et al. Continuous photoflow synthesis of precision polymers , 2016 .
[368] P. Pauson,et al. USES OF COBALT‐CARBONYL ACETYLENE COMPLEXES IN ORGANIC SYNTHESIS * † , 1977 .
[369] David Cyranoski,et al. Anti-parasite drugs sweep Nobel prize in medicine 2015 , 2015, Nature.
[370] Eun Kyu Lee,et al. Continuous fabrication of biocatalyst immobilized microparticles using photopolymerization and immiscible liquids in microfluidic systems. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[371] Dongbo Zhao. Updated Applications of Flow Chemistry in Pharmaceutical Synthesis , 2013 .
[372] Krishnan Rajeshwar,et al. Heterogeneous photocatalytic treatment of organic dyes in air and aqueous media , 2008 .
[373] Kevin I Booker-Milburn,et al. Flow photochemistry: Old light through new windows , 2012, Beilstein journal of organic chemistry.
[374] J. Birks,et al. Crocheted PTFE reactors for post-column photochemistry in HPLC , 1986 .
[375] W.Phillip Helman,et al. Rate Constants for the Decay and Reactions of the Lowest Electronically Excited Singlet State of Molecular Oxygen in Solution. An Expanded and Revised Compilation , 1995 .
[376] Anthony C. Coleman,et al. Visible light driven room temperature Pauson-Khand reaction. , 2009, Dalton transactions.
[377] V. Aggarwal,et al. A practical synthesis of a [2.2.1] bicyclic chiral sulfide for asymmetric transformations , 2006 .
[378] V. Hessel,et al. Heterocat, homocat and biocat : what does better flow? , 2015 .
[379] E. Kumacheva,et al. Microfluidic encapsulation of cells in polymer microgels. , 2012, Small.
[380] Jun-ichi Yoshida,et al. Green and sustainable chemical synthesis using flow microreactors. , 2011, ChemSusChem.
[381] W Feng,et al. Photochemistry of hydrolytic iron (III) species and photoinduced degradation of organic compounds. A minireview. , 2000, Chemosphere.
[382] K. Ohkubo,et al. Selective photocatalytic reactions with organic photocatalysts , 2013 .
[383] Julián Blanco-Gálvez,et al. Solar Photocatalytic Detoxification and Disinfection of Water: Recent Overview , 2007 .
[384] Reinhard Schmidt,et al. Physical mechanisms of generation and deactivation of singlet oxygen. , 2003, Chemical reviews.
[385] Christian H. Hornung,et al. Continuous flow photo-initiated RAFT polymerisation using a tubular photochemical reactor , 2016 .
[386] Volker Hessel,et al. Membrane microreactors: gas-liquid reactions made easy. , 2013, ChemSusChem.
[387] A. Studer,et al. The Electron is a Catalyst , 2015 .
[388] M. Haaf,et al. Solving the clogging problem: precipitate-forming reactions in flow. , 2006, Angewandte Chemie.
[389] Dominik Lenhart,et al. Enantioselective catalysis of photochemical reactions. , 2015, Angewandte Chemie.
[390] K. Dietliker,et al. Industrial applications of photochemistry: automotive coatings and beyond , 2010 .
[391] Arnold Gillner,et al. Photochemistry with laser radiation in condensed phase using miniaturized photoreactors , 2012, Beilstein journal of organic chemistry.
[392] V. Nekkanti,et al. Continuous Photopolymerization of n-Butyl Acrylate Using a Narrow Channel Reactor , 2008 .
[393] E. Drioli,et al. Preparation and characterisation of membranes with entrapped TiO2 and preliminary photocatalytic tests. , 2001, Annali di chimica.
[394] Daniel H. Chen,et al. Oxidation of PCE with a UV LED Photocatalytic Reactor , 2005 .
[395] Julián Blanco,et al. Photocatalysis with solar energy at a pilot-plant scale: an overview , 2002 .
[396] P. Wessig. Organocatalytic enantioselective photoreactions. , 2006, Angewandte Chemie.
[397] P. Tabeling,et al. Synthesizing microcapsules with controlled geometrical and mechanical properties with microfluidic double emulsion technology. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[398] M. Fagnoni,et al. Decatungstate Photocatalyzed Acylations and Alkylations in Flow via Hydrogen Atom Transfer , 2015 .
[399] Volker Hessel,et al. Separation/recycling methods for homogeneous transition metal catalysts in continuous flow , 2015 .
[400] L. Prat,et al. Impact of the diffusion limitation in microphotoreactors , 2015 .
[401] V. Hessel,et al. Coupling Microreaction Technologies, Polymer Chemistry, and Processing to Produce Polymeric Micro and Nanoparticles with Controlled Size, Morphology, and Composition , 2013 .
[402] S. Kuhn,et al. Strategies for solids handling in microreactors , 2014 .
[403] T. Jamison,et al. Synthesis of highly functionalized polycyclic quinoxaline derivatives using visible-light photoredox catalysis. , 2014, Angewandte Chemie.
[404] Megan A. Cismesia,et al. Characterizing chain processes in visible light photoredox catalysis , 2015, Chemical science.
[405] Ivano G. R. Gutz,et al. Microfluidic cell with a TiO2-modified gold electrode irradiated by an UV-LED for in situ photocatalytic decomposition of organic matter and its potentiality for voltammetric analysis of metal ions , 2007 .
[406] J. Knowles,et al. Complexity from simplicity: tricyclic aziridines from the rearrangement of pyrroles by batch and flow photochemistry. , 2013, Angewandte Chemie.
[407] P. Kreitmeier,et al. Synthesis of a polyisobutylene-tagged fac-Ir(ppy)3 complex and its application as recyclable visible-light photocatalyst in a continuous flow process , 2016 .
[408] D. Trauner,et al. Optochemical genetics. , 2011, Angewandte Chemie.
[409] Tadashi Suzuki,et al. Asymmetric photosensitized addition of methanol to (R)-(+)-(Z)-limonene in a microreactor , 2007 .
[410] S. K. Collins,et al. Toward a visible light mediated photocyclization: Cu-based sensitizers for the synthesis of [5]helicene. , 2012, Organic letters.
[411] A. Iles,et al. High surface area titania photocatalytic microfluidic reactors , 2007 .
[412] T. Shibata. Recent Advances in the Catalytic Pauson–Khand-Type Reaction , 2006 .
[413] Peter R Ogilby,et al. Singlet oxygen: there is indeed something new under the sun. , 2010, Chemical Society reviews.
[414] Dhananjay Dendukuri,et al. Synthesis and self-assembly of amphiphilic polymeric microparticles. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[415] Juana Du,et al. Crossed intermolecular [2+2] cycloadditions of acyclic enones via visible light photocatalysis. , 2009, Journal of the American Chemical Society.
[416] Michael W. George,et al. Immobilised photosensitisers for continuous flow reactions of singlet oxygen in supercritical carbon dioxide , 2011 .
[417] M. Májek,et al. On the mechanism of photocatalytic reactions with eosin Y , 2014, Beilstein journal of organic chemistry.
[418] B. Ohtani,et al. Is methylene blue an appropriate substrate for a photocatalytic activity test? A study with visible-light responsive titania , 2006 .
[419] Thomas Junkers,et al. Efficient [2 + 2] photocycloadditions under equimolar conditions by employing a continuous UV-flow reactor , 2013 .
[420] E. Oliveros,et al. Synthesis of acrylic latex via microflow miniemulsion photopolymerization using fluorescent and LED UV lamps , 2014 .
[421] Alberto E. Cassano,et al. The performance in a fluidized bed reactor of photocatalysts immobilized onto inert supports , 2000 .
[422] Xuming Zhang,et al. A comparative study of preparation methods of nanoporous TiO2 films for microfluidic photocatalysis , 2011 .
[423] V. Andrisano,et al. Application of high-performance liquid chromatography with diode-array detection and on-line post-column photochemical derivatization to the determination of analgesics. , 1996, Journal of chromatography. A.
[424] Christophe A. Serra,et al. Micromixer-assisted polymerization processes , 2011 .
[425] T. Gerven,et al. Comparison of photocatalytic space-time yields of 12 reactor designs for wastewater treatment , 2015 .
[426] Michael Oelgemöller,et al. Micro-photochemistry: photochemistry in microstructured reactors. The new photochemistry of the future? , 2008, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[427] V. Hessel,et al. Rapid trifluoromethylation and perfluoroalkylation of five-membered heterocycles by photoredox catalysis in continuous flow. , 2014, ChemSusChem.
[428] Magnus Rueping,et al. Immobilization and continuous recycling of photoredox catalysts in ionic liquids for applications in batch reactions and flow systems: catalytic alkene isomerization by using visible light. , 2015, Chemistry.
[429] S. Blechert,et al. THF: an efficient electron donor in continuous flow radical cyclization photocatalyzed by graphitic carbon nitride. , 2014, Chemistry.
[430] Lars Hafermann,et al. Small gold nanoparticles formed by rapid photochemical flow-through synthesis using microfluid segment technique , 2015, Journal of Nanoparticle Research.
[431] Klavs F. Jensen,et al. Development of a Photochemical Microfluidics Platform , 2011 .
[432] Elias Stathatos,et al. Sol–gel preparation of mesoporous photocatalytic TiO2 films and TiO2/Al2O3 composite membranes for environmental applications , 2006 .
[433] S. Esplugas,et al. Photo-Fenton treatment of a biorecalcitrant wastewater generated in textile activities: biodegradability of the photo-treated solution , 2002 .
[434] R. K. Shah,et al. Janus particles templated from double emulsion droplets generated using microfluidics. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[435] J. A. Rincón,et al. A continuous-flow protocol for light-induced benzylic fluorinations. , 2014, The Journal of organic chemistry.
[436] M. Poliakoff,et al. Photocatalytic hydroxylation of arylboronic acids using continuous flow reactors , 2015 .
[437] Pedro M. P. Gois,et al. 3.19 The Wolff Rearrangement , 2014 .
[438] S. Landgraf,et al. Application of semiconductor light sources for investigations of photochemical reactions. , 2001, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[439] Lin Li,et al. Optofluidic microreactors with TiO2-coated fiberglass. , 2013, ACS applied materials & interfaces.
[440] P. Doyle,et al. Lock release lithography for 3D and composite microparticles. , 2009, Lab on a chip.
[441] Timothy Noël,et al. A mild, one-pot Stadler-Ziegler synthesis of arylsulfides facilitated by photoredox catalysis in batch and continuous-flow. , 2013, Angewandte Chemie.
[442] David A. Nicewicz,et al. Recent Applications of Organic Dyes as Photoredox Catalysts in Organic Synthesis , 2014 .
[443] M. Hill,et al. Micromixing within microfluidic devices. , 2011, Topics in current chemistry.
[444] T. Fukuyama,et al. Revisiting the bromination of C-H bonds with molecular bromine by using a photo-microflow system. , 2014, Chemistry.
[445] Hong Liu,et al. Heterogeneous Photo-Fenton Reaction Catalyzed by Nanosized Iron Oxides for Water Treatment , 2012 .
[446] Kosei Ueno,et al. Photocyanation of pyrene across an oil/water interface in a polymer microchannel chip. , 2002, Lab on a chip.
[447] R. Arun Prasath,et al. Thiol-ene and thiol-yne chemistry in microfluidics : a straightforward method towards macroporous and nonporous functional polymer beads , 2010 .
[448] C. G. Fry,et al. Radical cation Diels-Alder cycloadditions by visible light photocatalysis. , 2011, Journal of the American Chemical Society.
[449] D. Waldeck. Photoisomerization Dynamics of Stilbenes , 1991 .
[450] A. Studer,et al. Catalysis of Radical Reactions: A Radical Chemistry Perspective. , 2016, Angewandte Chemie.
[451] K. Landfester,et al. Hybrid polymer latexes , 2007 .
[452] P. Lais,et al. Degradation of industrial waste waters on Fe/C-fabrics. Optimization of the solution parameters during reactor operation. , 2005, Water research.
[453] Peter H Seeberger,et al. A continuous-flow process for the synthesis of artemisinin. , 2013, Chemistry.
[454] C. Hawker,et al. Control of a living radical polymerization of methacrylates by light. , 2012, Angewandte Chemie.
[455] N. Ohba,et al. Photocatalytic reactions in microreactors , 2008 .
[456] Y. Kubozono,et al. Efficient Synthetic Photocyclization for Phenacenes Using a Continuous Flow Reactor , 2014 .
[457] A. M. Amat,et al. Organic photocatalysts for the oxidation of pollutants and model compounds. , 2012, Chemical reviews.
[458] T. Wirth,et al. Diazo compounds in continuous-flow technology. , 2015, ChemSusChem.
[459] H. García,et al. 2,4,6-Triphenylpyrylium Tetrafluoroborate as an Electron-Transfer Photosensitizer , 1994 .
[460] Holger Löwe,et al. Microflow Technology in Polymer Synthesis , 2012 .
[461] Volker Hessel,et al. Micro reactor and flow chemistry for industrial applications in drug discovery and development , 2012 .
[462] Mehmet Toner,et al. Multifunctional Encoded Particles for High-Throughput Biomolecule Analysis , 2007, Science.
[463] M. Baumann,et al. Continuous photochemistry: the flow synthesis of ibuprofen via a photo-Favorskii rearrangement , 2016 .
[464] Jennifer J. Becker,et al. A photoflow reactor for the continuous photoredox-mediated synthesis of C-glycoamino acids and C-glycolipids. , 2012, Angewandte Chemie.
[465] Atsushi Sugimoto,et al. The Barton reaction using a microreactor and black light. Continuous-flow synthesis of a key steroid intermediate for an endothelin receptor antagonist , 2006 .
[466] Rainer E. Martin,et al. Direct photocatalytic fluorination of benzylic C-H bonds with N-fluorobenzenesulfonimide. , 2015, Chemical communications.
[467] Claudio Battilocchio,et al. Machine‐Assisted Organic Synthesis , 2015, Angewandte Chemie.
[468] Ian R. Baxendale,et al. The Use of Gases in Flow Synthesis , 2016 .
[469] H. Lebel,et al. Iron-Catalyzed Amination of Sulfides and Sulfoxides with Azides in Photochemical Continuous Flow Synthesis , 2016 .
[470] Jeremy L. Steinbacher,et al. Greener approaches to organic synthesis using microreactor technology. , 2007, Chemical reviews.
[471] L. Palmisano,et al. Photocatalytic degradation of dyes by using a membrane reactor , 2004 .
[472] Timothy F. Jamison,et al. Scalable and Robust Synthesis of CpRu(MeCN)3PF6 via Continuous Flow Photochemistry , 2011, Journal of Flow Chemistry.
[473] Barbara Demmig-Adams,et al. Insights from Placing Photosynthetic Light Harvesting into Context. , 2014, The journal of physical chemistry letters.
[474] Dong‐Pyo Kim,et al. Efficient photosensitized oxygenations in phase contact enhanced microreactors. , 2011, Lab on a chip.
[475] C. Kappe,et al. Continuous-Flow Production of Photocatalytically Active Titanium Dioxide Nanocrystals and Its Application to the Photocatalytic Addition of N,N-Dimethylaniline to N-Methylmaleimide , 2013, Journal of Flow Chemistry.
[476] K. Katayama,et al. Reaction kinetics of dye decomposition processes monitored inside a photocatalytic microreactor. , 2012, Physical chemistry chemical physics : PCCP.
[477] P. Seeberger,et al. Organic Photoredox Chemistry in Flow , 2015 .
[478] Thomas Junkers,et al. Fast and Efficient [2 + 2] UV Cycloaddition for Polymer Modification via Flow Synthesis , 2014 .
[479] R. Givens,et al. Photoremovable Protecting Groups in Chemistry and Biology: Reaction Mechanisms and Efficacy , 2012, Chemical reviews.
[480] V. Hessel,et al. Catalyst retention in continuous flow with supercritical carbon dioxide , 2014 .
[481] S. Sieburth,et al. Formation and isomerization of polycyclic 1,5-enynes ☆ , 2015 .
[482] F. Martínez,et al. Heterogeneous photo-Fenton degradation of phenolic aqueous solutions over iron-containing SBA-15 catalyst , 2005 .
[483] Hao Zhang,et al. A microfluidic approach to fabricate monodisperse hollow or porous poly(HEMA-MMA) microspheres using single emulsions as templates. , 2009, Journal of colloid and interface science.
[484] P. Sheng,et al. Microfluidic fabrication of porous polymer microspheres: dual reactions in single droplets. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[485] Y. Kitayama,et al. Synthesis of Monodispersed Submillimeter-Sized Molecularly Imprinted Particles Selective for Human Serum Albumin Using Inverse Suspension Polymerization in Water-in-Oil Emulsion Prepared Using Microfluidics. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[486] Seung-Man Yang,et al. Optofluidic Assembly of Colloidal Photonic Crystals with Controlled Sizes, Shapes, and Structures , 2008 .
[487] M. Uehara,et al. Modified micro-space using self-organized nanoparticles for reduction of methylene blue. , 2003, Chemical communications.
[488] S. Ookawara,et al. Intensification of Photochemical Wastewater Decolorization Process Using Microreactors , 2014 .
[489] N. Hoffmann. Electron and hydrogen transfer in organic photochemical reactions , 2015 .
[490] Julián Blanco,et al. Decontamination and disinfection of water by solar photocatalysis: Recent overview and trends , 2009 .
[491] J. Scaiano. Solvent effects in the photochemistry of xanthone , 1980 .
[492] N. Tada,et al. A Study of Aerobic Photooxidation with a Continuous-Flow Microreactor , 2015, Synlett.
[493] Chang-Soo Lee,et al. Generation of Monodisperse Inorganic–Organic Janus Microspheres in a Microfluidic Device , 2009 .
[494] R. L. Pozzo,et al. Supported titanium oxide as photocatalyst in water decontamination: State of the art , 1997 .
[495] Enrico Drioli,et al. Photocatalytic membrane reactors for degradation of organic pollutants in water , 2001 .
[496] K. Nolan,et al. Microphotochemistry: 4,4'-Dimethoxybenzophenone mediated photodecarboxylation reactions involving phthalimides , 2011, Beilstein journal of organic chemistry.
[497] Rainer E. Martin,et al. Photocatalytic synthesis of allylic trifluoromethyl substituted styrene derivatives in batch and flow. , 2013, Organic letters.
[498] J. Pignatello. Dark and photoassisted Fe3+ -catalyzed degradation of chlorophenoxy herbicides by hydrogen peroxide , 1992 .
[499] J. Asua,et al. High performance pressure sensitive adhesives by miniemulsion photopolymerization in a continuous tubular reactor , 2014 .
[500] T. Fukuyama,et al. Adventures in Inner Space: Microflow Systems for Practical Organic Synthesis , 2008 .
[501] Tadashi Suzuki,et al. Multiphase Photocatalytic Oxidation in a Microreactor , 2009 .
[502] T. Oppenländer. Photochemical Processes of Water Treatment , 2007 .
[503] T. Wirth,et al. Advanced organic synthesis using microreactor technology. , 2007, Organic & biomolecular chemistry.
[504] P. Seeberger,et al. Synthesis of carbohydrate-functionalised sequence-defined oligo(amidoamine)s by photochemical thiol-ene coupling in a continuous flow reactor. , 2013, Chemistry.
[505] L. Campanella,et al. Accelerated mineralization of the drug Diclofenac via Fenton reactions in a concentric photo-reactor. , 2002, Water research.
[506] Elefteria Psillakis,et al. Enhancement of biodegradability of industrial wastewaters by chemical oxidation pre-treatment , 2004 .
[507] M. N. Kashid,et al. Microstructured Reactors for Multiphase Reactions: State of the Art , 2009 .
[508] J. Mattay,et al. Green photochemistry: the solar-chemical ‘Photo–Friedel–Crafts acylation’ of quinones , 2001 .
[509] Sang Hoon Lee,et al. Hydrodynamic micro-encapsulation of aqueous fluids and cells via ‘on the fly’ photopolymerization , 2006 .
[510] Dhananjay Dendukuri,et al. Continuous-flow lithography for high-throughput microparticle synthesis , 2006, Nature materials.
[511] Adventures in Inner Space: Microflow Systems for Practical Organic Synthesis , 2008 .
[512] A. deMello,et al. Through-wall mass transport as a modality for safe generation of singlet oxygen in continuous flows , 2013 .
[513] James B. Thomas,et al. Total Synthesis of (.+‐.)‐Ginkgolide B. , 2010 .
[514] Y. Inoue. Synthetic chemistry: Light on chirality , 2005, Nature.
[515] J. Asua,et al. Hybrid miniemulsion photopolymerization in a continuous tubular reactor—A way to expand the characteristics of polyurethane/acrylics , 2012 .
[516] J. Peres,et al. Comparison of the degradation of p-hydroxybenzoic acid in aqueous solution by several oxidation processes. , 2001, Chemosphere.
[517] V. Hessel,et al. Micromixers—a review on passive and active mixing principles , 2005 .