Transmission Electron Microscopy as a Tool for the Characterization of Soft Materials: Application and Interpretation
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[1] R. Sougrat,et al. Ionic liquids as self-assembly guide for the formation of nanostructured block copolymer membranes , 2015 .
[2] R. Kraehnert,et al. Mesoporous IrO2 Films Templated by PEO-PB-PEO Block-Copolymers: Self-Assembly, Crystallization Behavior, and Electrocatalytic Performance , 2011 .
[3] Y. Talmon. Transmission Electron Microscopy of Complex Fluids: The State of the Art , 1996 .
[4] Feihe Huang,et al. CO₂-Responsive Pillar[5]arene-Based Molecular Recognition in Water: Establishment and Application in Gas-Controlled Self-Assembly and Release. , 2015, Journal of the American Chemical Society.
[5] A. Heeres,et al. Orthogonal self-assembly of low molecular weight hydrogelators and surfactants. , 2003, Journal of the American Chemical Society.
[6] M. Carafa,et al. Non-ionic surfactant vesicles in pulmonary glucocorticoid delivery: characterization and interaction with human lung fibroblasts. , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[7] Tianyu Wang,et al. Hierarchical self-assembly of bolaamphiphiles with a hybrid spacer and L-glutamic acid headgroup: pH- and surface-triggered hydrogels, vesicles, nanofibers, and nanotubes. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[8] Feihe Huang,et al. A sugar-functionalized amphiphilic pillar[5]arene: synthesis, self-assembly in water, and application in bacterial cell agglutination. , 2013, Journal of the American Chemical Society.
[9] E. Furst,et al. Directed self-assembly , 2013 .
[10] A. Fadda,et al. Effect of Penetration Enhancer Containing Vesicles on the Percutaneous Delivery of Quercetin through New Born Pig Skin , 2011, Pharmaceutics.
[11] Xu Huang,et al. Molecular conformation-controlled vesicle/micelle transition of cationic trimeric surfactants in aqueous solution. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[12] A. Hao,et al. Controlled transformation from nanorods to vesicles induced by cyclomaltoheptaoses (β-cyclodextrins). , 2011, Carbohydrate research.
[13] Sami Nummelin,et al. Self-assembly of amphiphilic Janus dendrimers into mechanically robust supramolecular hydrogels for sustained drug release. , 2015, Chemistry.
[14] A. Asatekin,et al. Zwitterionic copolymer self-assembly for fouling resistant, high flux membranes with size-based small molecule selectivity , 2015 .
[15] Yu Liu,et al. Multistimuli responsive supramolecular vesicles based on the recognition of p-Sulfonatocalixarene and its controllable release of doxorubicin. , 2011, ACS nano.
[16] Pengyao Xing,et al. A supramolecular vesicle of camptothecin for its water dispersion and controllable releasing. , 2015, Carbohydrate research.
[17] Jie Yuan,et al. C12mimBr ionic liquid/SDS vesicle formation and use as template for the synthesis of hollow silica spheres. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[18] P. K. Kilpatrick,et al. Staining and drying-induced artifacts in electron microscopy of surfactant dispersions. II. Change in phase behavior produced by variation in ph modifiers, stain, and concentration , 1985 .
[19] Nikos Petzetakis,et al. Cylindrical micelles from the living crystallization-driven self-assembly of poly(lactide)-containing block copolymers , 2011 .
[20] Anthony J. Ryan,et al. Testing the Vesicular Morphology to Destruction: Birth and Death of Diblock Copolymer Vesicles Prepared via Polymerization-Induced Self-Assembly , 2014, Journal of the American Chemical Society.
[21] Feihe Huang,et al. Responsive reverse giant vesicles and gel from self-organization of a bolaamphiphilic pillar[5]arene , 2013 .
[22] Xiulin Zhu,et al. Biocompatible and pH-responsive triblock copolymer mPEG-b-PCL-b-PDMAEMA: Synthesis, self-assembly, and application , 2010 .
[23] Jianzhong Du,et al. Preparation of water-dispersible silver-decorated polymer vesicles and micelles with excellent antibacterial efficacy , 2012 .
[24] Yu Liu,et al. Supramolecular nanoassemblies of an amphiphilic porphyrin-cyclodextrin conjugate and their morphological transition from vesicle to network. , 2015, Chemistry.
[25] Jun Ling,et al. Poly(ε-caprolactone)-block-polysarcosine by Ring-Opening Polymerization of Sarcosine N-Thiocarboxyanhydride: Synthesis and Thermoresponsive Self-Assembly. , 2015, Biomacromolecules.
[26] V. Yam,et al. Supramolecular self-assembly of amphiphilic anionic platinum(II) complexes: a correlation between spectroscopic and morphological properties. , 2011, Journal of the American Chemical Society.
[27] S. Armes,et al. Mechanistic insights for block copolymer morphologies: how do worms form vesicles? , 2011, Journal of the American Chemical Society.
[28] C. Schmuck,et al. Molecular recognition of vesicles: host-guest interactions combined with specific dimerization of zwitterions. , 2010, Chemistry.
[29] Jianzhuang Chen,et al. An amphiphilic pillar[5]arene: synthesis, controllable self-assembly in water, and application in calcein release and TNT adsorption. , 2012, Journal of the American Chemical Society.
[30] H. Tian,et al. Light-driven linear helical supramolecular polymer formed by molecular-recognition-directed self-assembly of bis(p-sulfonatocalix[4]arene) and pseudorotaxane. , 2013, Journal of the American Chemical Society.
[31] R. H. Wade. A brief look at imaging and contrast transfer , 1992 .
[32] L. Isaacs,et al. Hydrophobic monofunctionalized cucurbit[7]uril undergoes self-inclusion complexation and forms vesicle-type assemblies. , 2015, Chemical communications.
[33] Tian Luo,et al. Formation of controllable hydrophilic/hydrophobic drug delivery systems by electrospinning of vesicles. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[34] Li Yang,et al. The nanocomposite of PtPd nanoparticles/onion-like mesoporous carbon vesicle for nonenzymatic amperometric sensing of glucose , 2011 .
[35] Alan J. Heeger,et al. Solar cell efficiency, self-assembly, and dipole-dipole interactions of isomorphic narrow-band-gap molecules. , 2012, Journal of the American Chemical Society.
[36] R. Henderson,et al. Comparison of optimal performance at 300 keV of three direct electron detectors for use in low dose electron microscopy , 2014, Ultramicroscopy.
[37] E. Mayer. Vitrification of pure liquid water , 1985 .
[38] Hua-ming Li,et al. Self-assembly and enhanced photocatalytic properties of BiOI hollow microspheres via a reactable ionic liquid. , 2011, Langmuir : the ACS journal of surfaces and colloids.
[39] Xi Zhang,et al. Photoresponsive Supramolecular Amphiphiles for Controlled Self‐Assembly of Nanofibers and Vesicles , 2010, Advanced materials.
[40] John M. Beierle,et al. Light-induced disassembly of self-assembled vesicle-capped nanotubes observed in real time. , 2011, Nature nanotechnology.
[41] M. Tyagi,et al. Synthesis of glycotriazololipids and observations on their self-assembly properties. , 2015, Carbohydrate research.
[42] C. Tung,et al. Self-assembled vesicles from amphiphilic platinum(II) terpyridyl complex in water , 2015 .
[43] P. Ma,et al. Super stretchable electroactive elastomer formation driven by aniline trimer self-assembly. , 2015, Chemistry of materials : a publication of the American Chemical Society.
[44] Suresh Das,et al. Vesicle‐to‐Rod Transition of Polymer Aggregates upon Irradiation , 2015 .
[45] Yong Wang,et al. Gold nanoparticles stabilized by an amphiphilic pillar[5]arene: preparation, self-assembly into composite microtubes in water and application in green catalysis , 2013 .
[46] B. Rybtchinski,et al. Bending nanofibers into nanospirals: coordination chemistry as a tool for shaping hydrophobic assemblies. , 2015, Chemistry.
[47] D. Putnam,et al. Delivery of foreign antigens by engineered outer membrane vesicle vaccines , 2010, Proceedings of the National Academy of Sciences.
[48] J. Rodríguez‐Cabello,et al. Temperature-triggered self-assembly of elastin-like block co-recombinamers:the controlled formation of micelles and vesicles in an aqueous medium. , 2012, Biomacromolecules.
[49] L. Franken,et al. The 5 kDa Protein NdhP Is Essential for Stable NDH-1L Assembly in Thermosynechococcus elongatus , 2014, PloS one.
[50] T. L. Jacobs,et al. Artifacts associated with quick-freezing and freeze-drying. , 1983, Journal of ultrastructure research.
[51] Y. Talmon. Staining and drying-induced artifacts in electron microscopy of surfactant dispersions , 1983 .
[52] R. Juang,et al. Synthesis, photochemical properties, and self-assembly of diblock copolymer bearing azobenzene moieties , 2015 .
[53] J. Hao,et al. Redox-responsive vesicles prepared from supramolecular cyclodextrin amphiphiles. , 2010, Carbohydrate research.
[54] Jan C. Hummelen,et al. Broadband dye-sensitized upconversion of near-infrared light , 2012, Nature Photonics.
[55] A. Fadda,et al. Investigating the interactions of resveratrol with phospholipid vesicle bilayer and the skin: NMR studies and confocal imaging. , 2015, International journal of pharmaceutics.
[56] Jinping Wang,et al. Skin targeted lipid vesicles as novel nano-carrier of ketoconazole: characterization, in vitro and in vivo evaluation , 2015, Journal of Materials Science: Materials in Medicine.
[57] S. Armes,et al. Facile Synthesis of Methacrylic ABC Triblock Copolymer Vesicles by RAFT Aqueous Dispersion Polymerization , 2012 .
[58] Gang Han,et al. Controlled synthesis and single-particle imaging of bright, sub-10 nm lanthanide-doped upconverting nanocrystals. , 2012, ACS nano.
[59] M. Hariharan,et al. Hydrophobic self-assembly of a perylenediimide-linked DNA dumbbell into supramolecular polymers. , 2010, Journal of the American Chemical Society.
[60] S. Raghavan,et al. Unraveling the mechanism of nanotube formation by chiral self-assembly of amphiphiles. , 2011, Journal of the American Chemical Society.
[61] J. Briggs,et al. Complexin arrests a pool of docked vesicles for fast Ca2+‐dependent release , 2012, The EMBO journal.
[62] Pengyao Xing,et al. An easy approach for constructing vesicles by using aromatic molecules with β-cyclodextrin. , 2015, Soft matter.
[63] Haili He,et al. Counting and dynamic studies of the small unilamellar phospholipid vesicle translocation with single conical glass nanopores. , 2015, Analytical chemistry.
[64] M. Akashi,et al. Transmission Electron Microscopic Study of Cross-Sectional Morphologies of Core−Corona Polymeric Nanospheres† , 2000 .
[65] V. Aswal,et al. 1-Hexanol triggered structural characterization of the worm-like micelle to vesicle transitions in cetyltrimethylammonium tosylate solutions , 2015 .
[66] Y. Ko,et al. Reduction-sensitive, robust vesicles with a non-covalently modifiable surface as a multifunctional drug-delivery platform. , 2010, Small.
[67] Panpan Sun,et al. Spontaneous vesicle phase formation by linear pseudo-oligomeric surfactant in aqueous solutions. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[68] S. Fort,et al. New glycosylated conjugate copolymer N-acetyl-β-D-glucosaminyl-pluronic: Synthesis, self-assembly and biological assays. , 2015, Colloids and surfaces. B, Biointerfaces.
[69] Dagmar Steinhauser,et al. Preparation of monodisperse block copolymer vesicles via flow focusing in microfluidics. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[70] Yongju Kim,et al. Self-Assembly of a Tripod Aromatic Rod into Stacked Planar Networks. , 2015, Chemistry.
[71] N. Chronakis,et al. Self‐Assembled Giant Vesicles Formed by Type I [3:3]‐Hexakis Adducts of C60 Equipped with Enantiomerically Pure cyclo‐Monomalonate Addends , 2015 .
[72] H. Wolterbeek,et al. Enhanced retention of encapsulated ions in cross-linked polymersomes. , 2015, The journal of physical chemistry. B.
[73] A. Hao,et al. pH-reversible vesicles based on the “supramolecular amphiphilies” formed by cyclodextrin and anthraquinone derivate , 2011 .
[74] Xinsong Li,et al. Functional vesicles formed by anticancer drug assembly. , 2015, Bioorganic & medicinal chemistry letters.
[75] P. Keller,et al. Self-assembly of linear-dendritic diblock copolymers: from nanofibers to polymersomes. , 2010, Journal of the American Chemical Society.
[76] Guiying Li,et al. Hybrid vesicles co-assembled from anionic graft copolymer and metal ions for controlled drug release , 2015 .
[77] P. Penczek,et al. A Primer to Single-Particle Cryo-Electron Microscopy , 2015, Cell.
[78] Ryoko M. Uda,et al. Inter-vesicle polymerization using nonionic oxyethylene-hydrogenated castor oil , 2015 .
[79] Guojie Wang,et al. A visible light responsive azobenzene‐functionalized polymer: Synthesis, self‐assembly, and photoresponsive properties , 2015 .
[80] I. Hamley,et al. Self-assembly of a peptide amphiphile containing L-carnosine and its mixtures with a multilamellar vesicle forming lipid. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[81] Simon J. Holder,et al. New micellar morphologies from amphiphilic block copolymers: disks, toroids and bicontinuous micelles , 2011 .
[82] Kecheng Jie,et al. Supramolecular Amphiphiles Based on Host‐Guest Molecular Recognition Motifs , 2015 .
[83] K. M. Zinn,et al. Transmission electron microscopy. , 1973, International ophthalmology clinics.
[84] Haoshen Zhou,et al. Reversible contrast in focus series of annular bright field images of a crystalline LiMn₂O₄ nanowire. , 2013, Ultramicroscopy.
[85] C. Böttcher,et al. Synthesis of Ternary, Hydrophilic—Lipophilic—Fluorophilic Block Copolymers by Consecutive RAFT Polymerizations and Their Self-Assembly into Multicompartment Micelles , 2010 .
[86] S. Prévost,et al. A theta-shaped amphiphilic cobaltabisdicarbollide anion: transition from monolayer vesicles to micelles. , 2011, Angewandte Chemie.
[87] P. Spicer,et al. Synthesis of crosslinked polymeric nanocapsules using catanionic vesicle templates stabilized by compressed CO2. , 2015, Soft matter.
[88] Jianzhong Du,et al. pH-Sensitive Block Copolymer Vesicles with Variable Trigger Points for Drug Delivery , 2012 .
[89] Zhen Gu,et al. Microneedle-array patches loaded with hypoxia-sensitive vesicles provide fast glucose-responsive insulin delivery , 2015, Proceedings of the National Academy of Sciences.
[90] Jin-xin He,et al. Preparation of multicompartment micelles from amphiphilic linear triblock terpolymers by pH-responsive self-assembly , 2015, Colloid and Polymer Science.
[91] J. Hao,et al. Self-Assembly and Rheological Properties of a Pseudogemini Surfactant Formed in a Salt-Free Catanionic Surfactant Mixture in Water. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[92] Dibakar Dhara,et al. pH-induced vesicle-to-micelle transition in amphiphilic diblock copolymer: investigation by energy transfer between in situ formed polymer embedded gold nanoparticles and fluorescent dye. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[93] Shaodong Zhang,et al. Modular synthesis of amphiphilic Janus glycodendrimers and their self-assembly into glycodendrimersomes and other complex architectures with bioactivity to biomedically relevant lectins. , 2013, Journal of the American Chemical Society.
[94] T. Dupont,et al. Capillary flow as the cause of ring stains from dried liquid drops , 1997, Nature.
[95] Xi Zhang,et al. Photocontrolled self-assembly and disassembly of block ionomer complex vesicles: a facile approach toward supramolecular polymer nanocontainers. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[96] Kecheng Jie,et al. Supramolecular Amphiphiles Based on Host-Guest Molecular Recognition Motifs. , 2015, Chemical reviews.
[97] Jie Su,et al. Self-assembled vesicles prepared from amphiphilic cyclodextrins as drug carriers. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[98] Pengyao Xing,et al. A multistimuli-responsive supramolecular vesicle constructed by cyclodextrins and tyrosine , 2015, Colloid and Polymer Science.
[99] K. S. Rao,et al. Sodium bromide induced micelle to vesicle transitions of newly synthesized anionic surface active ionic liquids based on dodecylbenzenesulfonate. , 2015, The journal of physical chemistry. B.
[100] M. van Heel,et al. Stacked bilayer helices: a new structural organization of amphiphilic molecules. , 1996, Ultramicroscopy.
[101] W. Kühlbrandt. The Resolution Revolution , 2014, Science.
[102] C. Pan,et al. Direct preparation of vesicles from one-pot RAFT dispersion polymerization , 2010 .
[103] Jianzhong Du,et al. Multifunctional polymer vesicles for ultrasensitive magnetic resonance imaging and drug delivery , 2012 .
[104] L. Cronin,et al. Reverse-vesicle formation of organic-inorganic polyoxometalate-containing hybrid surfactants with tunable sizes. , 2010, Chemistry.
[105] L E Scriven,et al. Controlled environment vitrification system: an improved sample preparation technique. , 1988, Journal of electron microscopy technique.
[106] Lizhen Sun,et al. pH-responsive vesicle-like particles based on inclusion complexes between cyclodextrins and methyl orange , 2010 .
[107] M. Fujita. Supramolecular Self-Assembly , 1995 .
[108] Peter J. Bentley,et al. Self-assembly , 2014, GECCO.
[109] K. Loos,et al. Hierarchical Self-Assembly in Supramolecular Double-Comb Diblock Copolymer Complexes , 2013 .
[110] B. Feringa,et al. Copper-zinc alloy nanopowder: a robust precious-metal-free catalyst for the conversion of 5-hydroxymethylfurfural. , 2015, ChemSusChem.
[111] B. Feringa,et al. Loading of Vesicles into Soft Amphiphilic Nanotubes using Osmosis. , 2015, Angewandte Chemie.
[112] J. A. McMILLAN,et al. Vitreous Ice: Irreversible Transformations During Warm-Up , 1965, Nature.
[113] Sumita Roy,et al. Effect of Hydrocarbon Chain and Amide Linkage on the Interfacial and Self-Assembly Properties of Nicotinic Acid Amphiphiles , 2015 .
[114] W. Baumeister,et al. Volta potential phase plate for in-focus phase contrast transmission electron microscopy , 2014, Proceedings of the National Academy of Sciences.
[115] Depeng Zhao,et al. Dynamic control of chirality in phosphine ligands for enantioselective catalysis , 2015, Nature Communications.
[116] A. Gulino,et al. Pathway-dependent self-assembly of perylene diimide/peptide conjugates in aqueous medium. , 2011, Chemistry.
[117] Lin Wang,et al. Faceted fatty acid vesicles formed from single-tailed perfluorinated surfactants. , 2015, Soft matter.
[118] Eunju Kim,et al. Direct synthesis of polymer nanocapsules: self-assembly of polymer hollow spheres through irreversible covalent bond formation. , 2010, Journal of the American Chemical Society.
[119] J. Dubochet,et al. Cryo-electron microscopy of vitrified specimens , 1988, Quarterly Reviews of Biophysics.
[120] Jun Li,et al. Self-Assembly and Micellization of a Dual Thermoresponsive Supramolecular Pseudo-Block Copolymer , 2011 .
[121] R. Lalancette,et al. ROMP-Derived Pyridylborate Block Copolymers: Self-Assembly, pH-Responsive Properties, and Metal-Containing Nanostructures , 2015 .
[122] Chen Han,et al. Synthesis and self-assembly of temperature and anion double responsive ionic liquid block copolymers , 2015, Frontiers of Materials Science.
[123] A. Bianco,et al. Self-Assembly of Tyrosine into Controlled Supramolecular Nanostructures. , 2015, Chemistry.
[124] M. Heydenreich,et al. Self-Assembly into Multicompartment Micelles and Selective Solubilization by Hydrophilic−Lipophilic−Fluorophilic Block Copolymers , 2011 .
[125] Yanjing Chen,et al. Effect of lamellarity and size on calorimetric phase transitions in single component phosphatidylcholine vesicles. , 2015, Biochimica et biophysica acta.
[126] W. Qiao,et al. pH‐Responsive and CO2‐responsive vesicles can be formed by N‐decylimidazole , 2015 .
[127] Y. Barenholz. Doxil®--the first FDA-approved nano-drug: lessons learned. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[128] Hongjun Yang,et al. Dual thermo- and light-responsive nanorods from self-assembly of the 4-propoxyazobenzene-terminated poly(N-isopropylacrylamide) in aqueous solution , 2015 .
[129] Stephen Z. D. Cheng,et al. Giant molecular shape amphiphiles based on polystyrene-hydrophilic [60]fullerene conjugates: click synthesis, solution self-assembly, and phase behavior. , 2012, Journal of the American Chemical Society.
[130] Jian Ji,et al. Photo-responsive supramolecular self-assembly and disassembly of an azobenzene-containing block copolymer , 2010 .
[131] Jiahua Zhu,et al. Multigeometry Nanoparticles: Hybrid Vesicle/Cylinder Nanoparticles Constructed with Block Copolymer Solution Assembly and Kinetic Control , 2015 .
[132] M. Jaggi,et al. beta-Cyclodextrin-curcumin self-assembly enhances curcumin delivery in prostate cancer cells. , 2010, Colloids and surfaces. B, Biointerfaces.
[133] G. Grason,et al. ABC triblock copolymer vesicles with mesh-like morphology. , 2010, ACS nano.
[134] Jianzhong Du,et al. Ultrasound and pH Dually Responsive Polymer Vesicles for Anticancer Drug Delivery , 2013, Scientific Reports.
[135] C. Böttcher,et al. Switchable supramolecular polymers from the self-assembly of a small monomer with two orthogonal binding interactions. , 2011, Journal of the American Chemical Society.
[136] R. O’Reilly,et al. Amphiphilic block copolymer self‐assemblies of poly(NVP)‐b‐poly(MDO‐co‐vinyl esters): Tunable dimensions and functionalities , 2015 .
[137] Y. Talmon,et al. Vesicle-micelle transition of phosphatidylcholine and octyl glucoside elucidated by cryo-transmission electron microscopy. , 1989, Biophysical journal.
[138] R. O’Reilly,et al. Thermally induced micelle to vesicle morphology transition for a charged chain end diblock copolymer. , 2010, Chemical communications.
[139] A. Fadda,et al. Development of curcumin loaded sodium hyaluronate immobilized vesicles (hyalurosomes) and their potential on skin inflammation and wound restoring. , 2015, Biomaterials.
[140] Alberto Saiani,et al. Effect of glycine substitution on Fmoc-diphenylalanine self-assembly and gelation properties. , 2011, Langmuir : the ACS journal of surfaces and colloids.
[141] J. Dey,et al. Interaction of sodium N-lauroylsarcosinate with N-alkylpyridinium chloride surfactants: spontaneous formation of pH-responsive, stable vesicles in aqueous mixtures. , 2011, Journal of colloid and interface science.
[142] Joseph G. Shapter,et al. Supramolecular construction of vesicles based on core-substituted naphthalene diimide appended with triethyleneglycol motifs. , 2011, Chemical communications.
[143] R. Bhosale,et al. Flower-like supramolecular self-assembly of phosphonic acid appended naphthalene diimide and melamine , 2015, Scientific Reports.
[144] H. Tan,et al. Hierarchical Self-Assembly of Discrete Organoplatinum(II) Metallacycles with Polysaccharide via Electrostatic Interactions and Their Application for Heparin Detection. , 2015, Journal of the American Chemical Society.
[145] P. Roth,et al. Soft Matter Nanoparticles with Reactive Coronal Pentafluorophenyl Methacrylate Residues via Non‐Polar RAFT Dispersion Polymerization and Polymerization‐Induced Self‐Assembly , 2015 .
[146] J. Hao,et al. Photo-induced phase transition from multilamellar vesicles to wormlike micelles , 2011 .
[147] C. R. Becer,et al. Thermo-Induced Self-Assembly of Responsive Poly(DMAEMA‑b‑DEGMA) Block Copolymers into Multi- and Unilamellar Vesicles , 2012 .
[148] P. Frederik,et al. Phospholipid, Nature's own slide and cover slip for cryo‐electron microscopy , 1989, Journal of microscopy.
[149] D. Danino,et al. Alkanediyl-.alpha.,.omega.-Bis(Dimethylalkylammonium Bromide) Surfactants (Dimeric Surfactants). 5. Aggregation and Microstructure in Aqueous Solutions , 1995 .
[150] J. Hao,et al. Chiroptical vesicles and disks that originated from achiral molecules. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[151] Z. Gu,et al. Facile Fabrication of Robust Organic Counterion‐Induced Vesicles: Reversible Thermal Behavior for Optical Temperature Sensor and Synergistic Catalyst upon Removal of Amine , 2015 .
[152] M. Klein,et al. Self-Assembly of Janus Dendrimers into Uniform Dendrimersomes and Other Complex Architectures , 2010, Science.
[153] Arpita Roy,et al. Vesicles Formation by Zwitterionic Micelle and Poly-L-lysine: Solvation and Rotational Relaxation Study. , 2015, The journal of physical chemistry. B.
[154] F. Bates,et al. Cryogenic Transmission Electron Microscopy (Cryo-TEM) of Micelles and Vesicles Formed in Water by Poly(ethylene oxide)-Based Block Copolymers , 2002 .
[155] T. Azzam,et al. Fully collapsed (kippah) vesicles: preparation and characterization. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[156] Xiao Chen,et al. pH-responsive vesicles from supra-amphiphiles based on dynamic imine bond , 2015 .
[157] D. Taton,et al. pH and temperature responsive polymeric micelles and polymersomes by self-assembly of poly[2-(dimethylamino)ethyl methacrylate]-b-poly(glutamic acid) double hydrophilic block copolymers. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[158] R. Pons,et al. Faceted phospholipid vesicles tailored for the delivery of Santolina insularis essential oil to the skin. , 2015, Colloids and surfaces. B, Biointerfaces.
[159] Yunqing Zhu,et al. Multifunctional homopolymer vesicles for facile immobilization of gold nanoparticles and effective water remediation. , 2014, ACS nano.
[160] I. Hamley,et al. Dehydrodipeptide Hydrogelators Containing Naproxen N-Capped Tryptophan: Self-Assembly, Hydrogel Characterization, and Evaluation as Potential Drug Nanocarriers. , 2015, Biomacromolecules.
[161] Sandor Balog,et al. Avoiding drying-artifacts in transmission electron microscopy: Characterizing the size and colloidal state of nanoparticles , 2015, Scientific Reports.
[162] P. Maček,et al. Size fractionation and size characterization of nanoemulsions of lipid droplets and large unilamellar lipid vesicles by asymmetric-flow field-flow fractionation/multi-angle light scattering and dynamic light scattering. , 2015, Journal of chromatography. A.
[163] E. Marques,et al. Size, charge, and stability of fully serine-based catanionic vesicles: towards versatile biocompatible nanocarriers. , 2015, Chemistry.
[164] M. Prieto,et al. Phase Separation and Nanodomain Formation in Hybrid Polymer/Lipid Vesicles. , 2015, ACS macro letters.
[165] Y. Barenholz,et al. Gelation of liposome interior A novel method for drug encapsulation , 1992, FEBS letters.
[166] S. Armes,et al. RAFT dispersion polymerization in non-polar solvents: facile production of block copolymer spheres, worms and vesicles in n-alkanes , 2013 .
[167] Zhenxia Chen,et al. Self-assembly and proton conductance of organic nanotubes from pillar[5]arenes , 2011 .
[168] S. Radiman,et al. Zwitterionic betaine-cholesterol system: Effects of sonication duration and aging on vesicles stability , 2015 .
[169] Jing Chen,et al. Rationally Separating the Corona and Membrane Functions of Polymer Vesicles for Enhanced T₂ MRI and Drug Delivery. , 2015, ACS applied materials & interfaces.
[170] J. Harris,et al. Routine preparation of air-dried negatively stained and unstained specimens on holey carbon support films: a review of applications. , 2002, Micron.
[171] J. Voskuhl,et al. Sugar-decorated sugar vesicles: lectin-carbohydrate recognition at the surface of cyclodextrin vesicles. , 2010, Chemistry.
[172] Zhan-Ting Li,et al. Vesicle self-assembly by tetrathiafulvalene derivatives in both polar and nonpolar solvents and pseudo-rotaxane mediated vesicle-to-microtube transformation. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[173] Yiyong Mai,et al. Controlled incorporation of particles into the central portion of vesicle walls. , 2010, Journal of the American Chemical Society.
[174] A. Fadda,et al. Exploring the co‐loading of lidocaine chemical forms in surfactant/phospholipid vesicles for improved skin delivery , 2015, The Journal of pharmacy and pharmacology.
[175] Tianbo Liu,et al. Crown-shaped tungstogermanates as solvent-controlled dual systems in the formation of vesicle-like assemblies. , 2015, Chemistry.
[176] Surajit Ghosh,et al. Spontaneous transition of micelle-vesicle-micelle in a mixture of cationic surfactant and anionic surfactant-like ionic liquid: a pure nonlipid small unilamellar vesicular template used for solvent and rotational relaxation study. , 2013, Langmuir : the ACS journal of surfaces and colloids.
[177] A. Verkleij,et al. Perspective and limitations of cryo‐electron microscopy , 1991, Journal of microscopy.
[178] Jordi Arbiol,et al. Hydrophobic gold nanoparticle self-assembly with phosphatidylcholine lipid: membrane-loaded and janus vesicles. , 2010, Nano letters.
[179] Gonen Ashkenasy,et al. Systems chemistry. , 2020, Chemical Society reviews.
[180] Kwangmeyung Kim,et al. Multi-core vesicle nanoparticles based on vesicle fusion for delivery of chemotherapic drugs. , 2011, Biomaterials.
[181] Yugang Huang,et al. An enzyme-catalysed access to amphiphilic triblock copolymer of PCL-b-PEG-b-PCL: synthesis, characterization and self-assembly properties , 2015 .
[182] Yi Pan,et al. pH-responsive supramolecular vesicles based on water-soluble pillar[6]arene and ferrocene derivative for drug delivery. , 2013, Journal of the American Chemical Society.
[183] A. Rinfret,et al. Low-Temperature Forms of Ice as Studied by X-Ray Diffraction , 1960, Nature.
[184] J. Biskupek,et al. Self-assembly of a sulphur-terminated graphene nanoribbon within a single-walled carbon nanotube. , 2011, Nature materials.
[185] E. Boekema,et al. A giant chlorophyll–protein complex induced by iron deficiency in cyanobacteria , 2001, Nature.
[186] Peng-Fei Gou,et al. Synthesis, self-assembly, and drug-loading capacity of well-defined cyclodextrin-centered drug-conjugated amphiphilic A(14)B(7) Miktoarm star copolymers based on poly(epsilon-caprolactone) and poly(ethylene glycol). , 2010, Biomacromolecules.
[187] Y. Talmon,et al. Intermediates in membrane fusion and bilayer/nonbilayer phase transitions imaged by time-resolved cryo-transmission electron microscopy. , 1989, Biophysical journal.
[188] P. Duan,et al. Hierarchical self-assembly of amphiphilic peptide dendrons: evolution of diverse chiral nanostructures through hydrogel formation over a wide pH range. , 2011, Chemistry.
[189] Xiaoya Liu,et al. Formation of bowl-shaped nanoparticles by self-assembly of cinnamic acid-modified dextran. , 2015, Carbohydrate polymers.
[190] F. C. Giacomelli,et al. Investigation of self-association between new glycosurfactant N-acetyl-β-d-glucosaminyl-PEG-docosanate and soybean phosphatidylcholine into vesicles , 2015 .
[191] J. Lepault,et al. Cryo-electron microscopy of artificial biological membranes , 1985 .
[192] V. Aswal,et al. Self-assembly of multi-responsive poly(N-isopropylacrylamide)-b-poly(N,N-dimethylaminopropylacrylamide) in aqueous media , 2015 .
[193] S. Agarwal,et al. Design and proof of reversible micelle-to-vesicle multistimuli-responsive morphological regulations , 2012 .
[194] Yu Liu,et al. Self-assembly of amphiphilic perylene-cyclodextrin conjugate and vapor sensing for organic amines. , 2010, The Journal of organic chemistry.
[195] Yong Liu,et al. Glucose-responsive polymer vesicles templated by α-CD/PEG inclusion complex. , 2015, Biomacromolecules.
[196] James F. Ranville,et al. Nanoparticle analysis and characterization methodologies in environmental risk assessment of engineered nanoparticles , 2008, Ecotoxicology.
[197] Zhong Lin Wang,et al. Kinetically Controlled Growth And Shape Formation Mechanism Of Platinum Nanoparticles , 1998, Microscopy and Microanalysis.
[198] J. Harris,et al. Application of the negative staining technique to both aqueous and organic solvent solutions of polymer particles , 1999 .
[199] S. Scheres,et al. How cryo-EM is revolutionizing structural biology. , 2015, Trends in biochemical sciences.
[200] Deqing Zhang,et al. Light‐Triggered Self‐Assembly of a Spiropyran‐Functionalized Dendron into Nano‐/Micrometer‐Sized Particles and Photoresponsive Organogel with Switchable Fluorescence , 2010 .
[201] Olivier Colombani,et al. The analysis of solution self-assembled polymeric nanomaterials. , 2014, Chemical Society reviews.
[202] Jean-Marie Lehn,et al. Perspectives in Supramolecular Chemistry—From Molecular Recognition towards Molecular Information Processing and Self‐Organization , 1990 .
[203] Zongquan Wu,et al. Polypeptide-b-Poly(Phenyl Isocyanide) Hybrid Rod-Rod Copolymers: One-Pot Synthesis, Self-Assembly, and Cell Imaging. , 2015, Macromolecular rapid communications.
[204] B. Nilsson,et al. A reductive trigger for peptide self-assembly and hydrogelation. , 2010, Journal of the American Chemical Society.
[205] Jian Ji,et al. Biocompatible vesicles based on PEO-b-PMPC/α-cyclodextrin inclusion complexes for drug delivery , 2011 .
[206] Jie Zhou,et al. Self-assembly of pH-sensitive fluorinated peptide dendron functionalized dextran nanoparticles for on-demand intracellular drug delivery , 2015, Journal of Materials Science: Materials in Medicine.
[207] Laurent Vial,et al. Dynamic combinatorial chemistry. , 2006, Chemical reviews.
[208] Jianzhong Du,et al. pH-Responsive Vesicles from a Schizophrenic Diblock Copolymer , 2010 .
[209] Adam E. Smith,et al. Schizophrenic Self-Assembly of Block Copolymers Synthesized via Aqueous RAFT Polymerization: From Micelles to Vesicles , 2010 .
[210] S. P. Moulik,et al. Synergism between anionic double tail and zwitterionic single tail surfactants in the formation of mixed micelles and vesicles, and use of the micelle templates for the synthesis of nano-structured gold particles , 2015 .
[211] Dave J Adams,et al. Directed self-assembly of dipeptides to form ultrathin hydrogel membranes. , 2010, Journal of the American Chemical Society.
[212] Namir,et al. Authors , 1947, Praxis der Kinderpsychologie und Kinderpsychiatrie.
[213] Kyle L. Morris,et al. Self-assembly mechanism for a naphthalene-dipeptide leading to hydrogelation. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[214] Honggang Cui,et al. Elucidating the assembled structure of amphiphiles in solution via cryogenic transmission electron microscopy. , 2007, Soft matter.
[215] P. Luisi,et al. New Insights into the Growth and Transformation of Vesicles: A Free-Flow Electrophoresis Study. , 2015, The journal of physical chemistry. B.
[216] I. K. Dmitrieva,et al. The improved Thomas-Fermi model: chemical and ionization potentials in atoms , 1984 .
[217] F. Sharif,et al. Self assembly of graphene oxide at the liquid–liquid interface: A new route to the fabrication of graphene based composites , 2011 .
[218] F. Nudelman,et al. Controlling Internal Pore Sizes in Bicontinuous Polymeric Nanospheres** , 2015, Angewandte Chemie.
[219] Heiner Friedrich,et al. Imaging of self-assembled structures: interpretation of TEM and cryo-TEM images. , 2010, Angewandte Chemie.
[220] P. Frederik,et al. Cryoelectron microscopy of liposomes. , 2005, Methods in enzymology.
[221] C. Reutelingsperger,et al. Aggregation of phospholipid vesicles by a chimeric protein with the N-terminus of annexin I and the core of annexin V. , 1993, Biochemistry.
[222] Xuefeng Li,et al. Multiple Responsive Fluids Based on Vesicle to Wormlike Micelle Transitions by Single-Tailed Pyrrolidone Surfactants. , 2015, Langmuir : the ACS journal of surfaces and colloids.