Formation of nascent soot and other condensed-phase materials in flames

[1]  Hai Wang,et al.  Properties of nanocrystalline TiO2 synthesized in premixed flames stabilized on a rotating surface , 2011 .

[2]  A. Violi,et al.  Peri-condensed aromatics with aliphatic chains as key intermediates for the nucleation of aromatic hydrocarbons , 2011 .

[3]  J. Cain,et al.  Evidence of aliphatics in nascent soot particles in premixed ethylene flames , 2011 .

[4]  Markus Kraft,et al.  Developing the PAH-PP soot particle model using process informatics and uncertainty propagation , 2011 .

[5]  Hai Wang,et al.  Temperature-dependent gas-surface chemical kinetic model for methane ignition catalyzed by in situ generated palladium nanoparticles , 2011 .

[6]  Q. Yao,et al.  Synthesis of TiO2 nanoparticles by premixed stagnation swirl flames , 2011 .

[7]  Leon Gradoń,et al.  Nanoparticles in Medicine and Environment: Inhalation and Health Effects , 2010 .

[8]  J. Kent,et al.  Detailed modeling of size distribution functions and hydrogen content in combustion-formed particles , 2010 .

[9]  J. Cain,et al.  Micro-FTIR study of soot chemical composition-evidence of aliphatic hydrocarbons on nascent soot surfaces. , 2010, Physical chemistry chemical physics : PCCP.

[10]  D. Wales,et al.  Modelling the internal structure of nascent soot particles , 2010 .

[11]  Ranjan S. Mehta,et al.  Composition PDF/photon Monte Carlo modeling of moderately sooting turbulent jet flames , 2010 .

[12]  M. Nakano,et al.  Signature of multiradical character in second hyperpolarizabilities of rectangular graphene nanoflakes , 2010 .

[13]  D. Haworth Progress in probability density function methods for turbulent reacting flows , 2010 .

[14]  Y. Ju,et al.  Flame synthesis and effects of host materials on Yb3+/Er3+ co-doped upconversion nanophosphors , 2010 .

[15]  David T. Wickham,et al.  Methane ignition catalyzed by in situ generated palladium nanoparticles , 2010 .

[16]  Vinod M. Janardhanan,et al.  A study on the coagulation of polycyclic aromatic hydrocarbon clusters to determine their collision efficiency , 2010 .

[17]  M. Koshi,et al.  A highly efficient growth mechanism of polycyclic aromatic hydrocarbons. , 2010, Physical chemistry chemical physics : PCCP.

[18]  Y. Chen,et al.  Preparation of TiO2 films using nanopowder synthesized by flat-flame chemical vapor condensation method for DSSCs , 2010 .

[19]  B. Sirjean,et al.  Weakly bound carbon-carbon bonds in acenaphthene derivatives and hexaphenylethane. , 2010, The journal of physical chemistry. A.

[20]  C. Law,et al.  Investigation on fuel-rich premixed flames of monocyclic aromatic hydrocarbons: Part I. Intermediate identification and mass spectrometric analysis , 2010 .

[21]  P. Geerlings,et al.  A benchmark theoretical study of the electronic ground state and of the singlet-triplet split of benzene and linear acenes. , 2009, The Journal of chemical physics.

[22]  Y. Kawazoe,et al.  Bonding and magnetism in nanosized graphene molecules: Singlet states of zigzag edged hexangulenes C(6m(2) )H(6m)(m=2,3,...,10). , 2009, The Journal of chemical physics.

[23]  J. R. Engel,et al.  In Situ Generation of Pd/PdO Nanoparticle Methane Combustion Catalyst: Correlation of Particle Surface Chemistry with Ignition , 2009 .

[24]  P. R. Westmoreland,et al.  Isomer-specific combustion chemistry in allene and propyne flames , 2009 .

[25]  M. Nakano,et al.  Third-order nonlinear optical properties of trigonal, rhombic and bow-tie graphene nanoflakes with strong structural dependence of diradical character , 2009 .

[26]  Ferdinand Hofer,et al.  The tattoos of the Tyrolean Iceman: a light microscopical, ultrastructural and element analytical study , 2009 .

[27]  Hai Wang,et al.  Quantitative measurement of soot particle size distribution in premixed flames – The burner-stabilized stagnation flame approach , 2009 .

[28]  M. Maricq An examination of soot composition in premixed hydrocarbon flames via laser ablation particle mass spectrometry , 2009 .

[29]  L. A. Sgro,et al.  Probe measurements and numerical model predictions of evolving size distributions in premixed flames , 2009 .

[30]  Hai Wang,et al.  Evolution of Soot Particle Size Distribution Function in Burner-Stabilized Stagnation n-Dodecane- Oxygen- Argon Flames , 2009 .

[31]  A. Mebel,et al.  Can the C(5)H(5) + C(5)H(5) --> C(10)H(10) --> C(10)H(9) + H/C(10)H(8) + H(2) reaction produce naphthalene? An Ab initio/RRKM study. , 2009, The journal of physical chemistry. A.

[32]  J. Aihara,et al.  Aromaticity of neutral and doubly charged polyacenes. , 2009, Physical chemistry chemical physics : PCCP.

[33]  M. Nakano,et al.  Theoretical study on third-order nonlinear optical properties in hexagonal graphene nanoflakes: Edge shape effect , 2009 .

[34]  C. Westbrook,et al.  Detailed chemical kinetic mechanism for the oxidation of biodiesel fuels blend surrogate , 2009 .

[35]  J. Bozzelli,et al.  Indene formation from alkylated aromatics: kinetics and products of the fulvenallene + acetylene reaction. , 2009, The journal of physical chemistry. A.

[36]  Dawei Zhang,et al.  Open-shell ground state of polyacenes: a valence bond study. , 2009, The journal of physical chemistry. A.

[37]  Heinz Pitsch,et al.  Hybrid Method of Moments for modeling soot formation and growth , 2009 .

[38]  P. Oßwald,et al.  Sampling Probe Influences on Temperature and Species Concentrations in Molecular Beam Mass Spectroscopic Investigations of Flat Premixed Low-pressure Flames , 2009 .

[39]  P. R. Westmoreland,et al.  Recent contributions of flame-sampling molecular-beam mass spectrometry to a fundamental understanding of combustion chemistry , 2009 .

[40]  F. Battin‐Leclerc,et al.  Influence of EGR compounds on the oxidation of an HCCI-diesel surrogate , 2009, 0903.3707.

[41]  Yuyang Li,et al.  Experimental Study of a Fuel-Rich Premixed Toluene Flame at Low Pressure , 2009 .

[42]  M. Aigner,et al.  Comparison of Particle Size Measurements with Laser-Induced Incandescence, Mass Spectroscopy, and Scanning Mobility Particle Sizing in a Laminar Premixed Ethylene/Air Flame , 2009 .

[43]  A. C. Barone,et al.  Measurement of nanoparticles of organic carbon in non-sooting flame conditions , 2009 .

[44]  Qingzhong Li,et al.  Nonadditivity of methyl group in single‐electron hydrogen bond of methyl radical‐water complex , 2009 .

[45]  Markus Kraft,et al.  Modelling soot formation in a premixed flame using an aromatic-site soot model and an improved oxidation rate , 2009 .

[46]  S. L. Manzello,et al.  Effects of benzene and naphthalene addition on soot inception in a well-stirred reactor/plug flow reactor , 2009 .

[47]  Yuyang Li,et al.  Investigation of the rich premixed laminar acetylene/oxygen/argon flame: Comprehensive flame structure and special concerns of polyynes , 2009 .

[48]  Yuyang Li,et al.  An experimental study of the rich premixed ethylbenzene flame at low pressure , 2009 .

[49]  Y. Liu,et al.  Size distribution and morphology of nascent soot in premixed ethylene flames with and without benzene doping , 2009 .

[50]  A. Ciajolo,et al.  Effect of fuel/air ratio and aromaticity on the molecular weight distribution of soot in premixed n-heptane flames , 2009 .

[51]  P. R. Westmoreland,et al.  Benzene formation in premixed fuel-rich 1,3-butadiene flames , 2009 .

[52]  R. Indeck,et al.  Flame synthesis of superparamagnetic Fe/Nb nanocomposites for biomedical applications , 2009 .

[53]  J. Lighty,et al.  Modeling and measurements of size distributions in premixed ethylene and benzene flames , 2009 .

[54]  S. S. Sadhal,et al.  Interdisciplinary transport phenomena : fluid, thermal, biological, materials and space sciences , 2009 .

[55]  X. Tan Towards a comprehensive electronic database of polycyclic aromatic hydrocarbons and its application in constraining the identities of possible carriers of the diffuse interstellar bands. , 2009, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.

[56]  J. Hewson,et al.  A-priori analysis of conditional moment closure modeling of a temporal ethylene jet flame with soot formation using direct numerical simulation , 2009 .

[57]  Andrea D’Anna,et al.  Combustion-formed nanoparticles , 2009 .

[58]  Adel F. Sarofim,et al.  Combustion generated fine carbonaceous particles , 2009 .

[59]  Hai Wang,et al.  Synthesis of nano-phase TiO2 crystalline films over premixed stagnation flames , 2009 .

[60]  C. Westbrook,et al.  A comprehensive detailed chemical kinetic reaction mechanism for combustion of n-alkane hydrocarbons from n-octane to n-hexadecane , 2009 .

[61]  M. Nakano,et al.  Theoretical study of third-order nonlinear optical properties in square nanographenes with open-shell singlet ground states , 2008 .

[62]  S. Dai,et al.  Circumacenes versus periacenes : HOMO-LUMO gap and transition from nonmagnetic to magnetic ground state with size , 2008 .

[63]  R. Crespo‐Otero,et al.  Interactions between simple radicals and water , 2008 .

[64]  Y. Kawazoe,et al.  Bonding and Magnetism in High Symmetry Nano-Sized Graphene Molecules: Linear Acenes C4m+2H2m+4 (m=2,…25); Zigzag Hexangulenes C6m**2H6m (m=2,…10); Crenelated Hexangulenes C6(3m**2−3m+1)H6(2m−1) (m=2,…6); Zigzag Triangulenes Cm**2+4m+1H6m (m=2,…15) , 2008 .

[65]  Markus Kraft,et al.  Aromatic site description of soot particles , 2008 .

[66]  Jacqueline H. Chen,et al.  Three-dimensional direct numerical simulation of soot formation and transport in a temporally evolving nonpremixed ethylene jet flame , 2008 .

[67]  Hai Wang,et al.  On evolution of particle size distribution functions of incipient soot in premixed ethylene-oxygen-argon flames , 2008 .

[68]  J. H. Miller,et al.  Intermolecular potential calculations for polynuclear aromatic hydrocarbon clusters. , 2008, The journal of physical chemistry. A.

[69]  P. Liska,et al.  Fabrication of thin film dye sensitized solar cells with solar to electric power conversion efficiency over 10 , 2008 .

[70]  Qingzhong Li,et al.  Influence of substitution, hybridization, and solvent on the properties of C-HO single-electron hydrogen bond in CH3-H2O complex. , 2008, Journal of Physical Chemistry A.

[71]  M. Petters,et al.  Water interaction with hydrophobic and hydrophilic soot particles. , 2008, Physical chemistry chemical physics : PCCP.

[72]  L. Kennedy Carbon Nanotubes, Synthesis, Growth and Orientation Control in Opposed Flow Diffusion Flames , 2008 .

[73]  A. D’Anna Detailed Kinetic Modeling of Particulate Formation in Rich Premixed Flames of Ethylene , 2008 .

[74]  M. Maricq Bipolar Diffusion Charging of Soot Aggregates , 2008 .

[75]  P. Biswas,et al.  Nanostructured TiO2 Films with Controlled Morphology Synthesized in a Single Step Process: Performance of Dye-Sensitized Solar Cells and Photo Watersplitting , 2008 .

[76]  M. Maricq Thermal equilibration of soot charge distributions by coagulation , 2008 .

[77]  A. C. Barone,et al.  Measurements of nanoparticles of organic carbon and soot in flames and vehicle exhausts. , 2008, Environmental science & technology.

[78]  I. Kennedy,et al.  Energetics of cubic and monoclinic yttrium oxide polymorphs: Phase transitions, surface enthalpies, and stability at the nanoscale , 2008 .

[79]  S. Dai,et al.  Electronic ground state of higher acenes. , 2007, The journal of physical chemistry. A.

[80]  Joachim Happold Geschichtete polyzyklische aromatische Kohlenwasserstoffe als Bausteine der Rußbildung , 2008 .

[81]  Craig A. Taatjes,et al.  Benzene precursors and formation routs in a stoichiometriccyclohexane flame , 2008 .

[82]  P. Fennell,et al.  The sampling of nanoparticles of MgO formed when doping an oxygen-rich flame with magnesium: The measurement of the concentrations and size-distributions of these nanoparticles , 2007 .

[83]  H. Hercman,et al.  Age of Black Coloured Laminae Within Speleothems from Domica Cave and Its Significance for Dating of Prehistoric Human Settlement , 2007 .

[84]  Sotiris E. Pratsinis,et al.  Flame aerosol synthesis of smart nanostructured materials , 2007 .

[85]  M. Maricq Chemical characterization of particulate emissions from diesel engines: A review , 2007 .

[86]  J. Gore,et al.  Chemical kinetic considerations for postflame synthesis of carbon nanotubes in premixed flames using a support catalyst , 2007 .

[87]  K. Fukui,et al.  Electronic structures of graphene edges and nanographene , 2007 .

[88]  C. Law,et al.  The effect of flame structure on soot formation and transport in turbulent nonpremixed flames using direct numerical simulation , 2007 .

[89]  C. Westbrook,et al.  Detailed chemical kinetic oxidation mechanism for a biodiesel surrogate , 2007 .

[90]  J. Kahl,et al.  20th-Century Industrial Black Carbon Emissions Altered Arctic Climate Forcing , 2007, Science.

[91]  James A. Miller,et al.  Association rate constants for reactions between resonance-stabilized radicals: C3H3 + C3H3, C3H3 + C3H5, and C3H5 + C3H5. , 2007, Physical chemistry chemical physics : PCCP.

[92]  E. Eddings,et al.  Average structural analysis of the extractable material of young soot gathered in an ethylene inverse diffusion flame , 2007 .

[93]  M. Nakano,et al.  First and second hyperpolarizabilities of donor–acceptor disubstituted diphenalenyl radical systems , 2007 .

[94]  Roda Bounaceur,et al.  Kinetic modelling of a surrogate diesel fuel applied to 3D auto-ignition in HCCI engines , 2007, 0706.2062.

[95]  Philippe Dagaut Kinetics of Jet Fuel Combustion Over Extended Conditions: Experimental and Modeling , 2007 .

[96]  C. Cavallotti,et al.  Conversion of C5 into C6 cyclic species through the formation of C7 intermediates. , 2007, The journal of physical chemistry. A.

[97]  Markus Kraft,et al.  Coupling a stochastic soot population balance to gas-phase chemistry using operator splitting , 2007 .

[98]  M. Bendikov,et al.  Kinetic and thermodynamic stability of acenes: Theoretical study of nucleophilic and electrophilic addition. , 2007, The Journal of organic chemistry.

[99]  P. R. Westmoreland,et al.  Initial steps of aromatic ring formation in a laminar premixed fuel-rich cyclopentene flame. , 2006, The journal of physical chemistry. A.

[100]  Bin Zhao,et al.  A comparative study of nanoparticles in premixed flames by scanning mobility particle sizer, small angle neutron scattering, and transmission electron microscopy , 2007 .

[101]  P. R. Westmoreland,et al.  Photoionization mass spectrometric studies and modeling of fuel-rich allene and propyne flames. , 2007 .

[102]  Randy L. Vander Wal,et al.  HRTEM study of diesel soot collected from diesel particulate filters , 2007 .

[103]  P. Dagaut,et al.  Experimental and modelling study of gasoline surrogate mixtures oxidation in jet stirred reactor and shock tube , 2007 .

[104]  Lixia Wei,et al.  An experimental study of the premixed benzene/oxygen/argon flame with tunable synchrotron photoionization☆ , 2007 .

[105]  E. Therssen,et al.  Molecular species adsorbed on soot particles issued from low sooting methane and acetylene laminar flames: A laser-based experiment , 2007 .

[106]  P. Dagaut,et al.  The oxidation of a diesel fuel at 1–10atm: Experimental study in a JSR and detailed chemical kinetic modeling , 2007 .

[107]  P. Biswas,et al.  Synthesis of single-walled carbon nanotubes in oxy-fuel inverse diffusion flames with online diagnostics , 2007 .

[108]  W. Greiner,et al.  Interplay of Electrostatic and van der Waals Forces in Coronene Dimer , 2007 .

[109]  F. Mauss,et al.  Calculating the soot particle size distribution function in turbulent diffusion flames using a sectional method , 2007 .

[110]  Paul Roth,et al.  Particle synthesis in flames , 2007 .

[111]  L. A. Sgro,et al.  Characterization of nanoparticles of organic carbon (NOC) produced in rich premixed flames by differential mobility analysis , 2007 .

[112]  Samuel L. Manzello,et al.  Soot particle size distributions in a well-stirred reactor/plug flow reactor , 2007 .

[113]  Michael Frenklach,et al.  Numerical simulations of soot aggregation in premixed laminar flames , 2007 .

[114]  R. W. Hall,et al.  Formation and stabilization of persistent free radicals. , 2007, Proceedings of the Combustion Institute. International Symposium on Combustion.

[115]  A. Donchev,et al.  Ab initio quantum force field for simulations of nanostructures , 2006 .

[116]  B. Demirdjian,et al.  Heterogeneities in the Microstructure and Composition of Aircraft Engine Combustor Soot: Impact on the Water Uptake , 2006 .

[117]  G. B. Curtis The Cave Painters: Probing the Mysteries of the World's First Artists , 2006 .

[118]  M. Lorblanchet,et al.  Preliminary investigations by Raman microscopy of prehistoric pigments in the wall‐painted cave at Roucadour, Quercy, France , 2006 .

[119]  Nicolae Barsan,et al.  Sensing low concentrations of CO using flame-spray-made Pt/SnO2 nanoparticles , 2006 .

[120]  Piotr Zelenay,et al.  A class of non-precious metal composite catalysts for fuel cells , 2006, Nature.

[121]  A. Violi,et al.  Combustion-generated nanoparticles produced in a benzene flame: a multiscale approach. , 2006, The Journal of chemical physics.

[122]  M. C. D. Santos Electronic properties of acenes: Oligomer to polymer structure , 2006 .

[123]  E. Eddings,et al.  FT-IR and 1H NMR characterization of the products of an ethylene inverse diffusion flame , 2006 .

[124]  S. D. Stasio,et al.  Synchrotron SAXS 〈in situ〉 identification of three different size modes for soot nanoparticles in a diffusion flame , 2006 .

[125]  Jasdeep Singh,et al.  Numerical simulation and sensitivity analysis of detailed soot particle size distribution in laminar premixed ethylene flames , 2006 .

[126]  M. Maricq A comparison of soot size and charge distributions from ethane, ethylene, acetylene, and benzene/ethylene premixed flames , 2006 .

[127]  Stephen D. Tse,et al.  Synthesis of carbon nanotubes on metal alloy substrates with voltage bias in methane inverse diffusion flames , 2006 .

[128]  I. Kennedy,et al.  Quantitative measurements of the generation of hydroxyl radicals by soot particles in a surrogate lung fluid , 2006 .

[129]  M. Tsukada,et al.  Scanning tunneling microscopy and spectroscopy of the electronic local density of states of graphite surfaces near monoatomic step edges , 2006, cond-mat/0601141.

[130]  P. R. Westmoreland,et al.  Identification of C5Hx isomers in fuel-rich flames by photoionization mass spectrometry and electronic structure calculations. , 2005, The journal of physical chemistry. A.

[131]  Zhigang Li,et al.  Comment on ``Phenomenological description of mobility of nm- and sub-nm-sized charged aerosol particles in electric field'' by Shandakov, S. D., Nasibulin, A. G. and Kauppinen, E. I. , 2006 .

[132]  Dan V. Nicolau,et al.  BioMEMS and Nanotechnology III , 2006 .

[133]  Burak Atakan,et al.  Studies of aromatic hydrocarbon formation mechanisms in flames: Progress towards closing the fuel gap , 2006 .

[134]  Sotiris E. Pratsinis,et al.  Aerosol flame synthesis of catalysts , 2006 .

[135]  M. Molina,et al.  A User’s Reference , 2022 .

[136]  Zulkhair Mansurov,et al.  Soot Formation in Combustion Processes (Review) , 2005 .

[137]  N. Yao,et al.  Flame synthesis of Y2O3:Eu nanophosphors using ethanol as precursor solvents , 2005 .

[138]  Michael Frenklach,et al.  Kinetic Monte Carlo simulations of CVD diamond growth—Interlay among growth, etching, and migration , 2005 .

[139]  Lionel Poisson,et al.  Photoionization mass spectrometer for studies of flame chemistry with a synchrotron light source , 2005 .

[140]  Michael P. Tolocka,et al.  Chemical species associated with the early stage of soot growth in a laminar premixed ethylene–oxygen–argon flame , 2005 .

[141]  M. Thomson,et al.  OPTIMIZATION OF SOOT MODELING IN TURBULENT NONPREMIXED ETHYLENE/AIR JET FLAMES , 2005 .

[142]  C. Cavallotti,et al.  The peculiar kinetics of the reaction between acetylene and the cyclopentadienyl radical. , 2005, The journal of physical chemistry. A.

[143]  D. E. Rosner Flame Synthesis of Valuable Nanoparticles: Recent Progress/Current Needs in Areas of Rate Laws, Population Dynamics, and Characterization , 2005 .

[144]  Hai Wang,et al.  Gas-nanoparticle scattering: a molecular view of momentum accommodation function. , 2005, Physical review letters.

[145]  E. Eddings,et al.  Study of the Evolution of Soot from Various Fuels , 2005 .

[146]  M. Maricq The dynamics of electrically charged soot particles in a premixed ethylene flame , 2005 .

[147]  M. Zachariah,et al.  Understanding the difference in oxidative properties between flame and diesel soot nanoparticles: the role of metals. , 2005, Environmental science & technology.

[148]  Anand Krishnan Prakash,et al.  Synthesis and Reactivity of a Super‐Reactive Metastable Intermolecular Composite Formulation of Al/KMnO4 , 2005 .

[149]  Daniel C. Haworth,et al.  Interactions among soot, thermal radiation, and NOx emissions in oxygen-enriched turbulent nonpremixed flames: a computational fluid dynamics modeling study , 2005 .

[150]  Yousuke Kobayashi,et al.  Observation of zigzag and armchair edges of graphite using scanning tunneling microscopy and spectroscopy , 2005 .

[151]  Jeffrey T. Roberts,et al.  Surface chemistry of nanometer-sized aerosol particles: reactions of molecular oxygen with 30 nm soot particles as a function of oxygen partial pressure. , 2005, The journal of physical chemistry. B.

[152]  J. Hansen,et al.  Distant origins of Arctic black carbon: A Goddard Institute for Space Studies ModelE experiment , 2005 .

[153]  M. Molina,et al.  Hydrophilic properties of aged soot , 2005 .

[154]  Bin Zhao,et al.  Ultrafine anatase TiO2 nanoparticles produced in premixed ethylene stagnation flame at 1 atm , 2005 .

[155]  L. Kennedy,et al.  Fullerene formation in atmospheric pressure opposed flow oxy-flames , 2005 .

[156]  Andrew McIlroy,et al.  Studies of a fuel-rich propane flame with photoionization mass spectrometry , 2005 .

[157]  Michael Frenklach,et al.  Monte-Carlo simulation of soot particle coagulation and aggregation: the effect of a realistic size distribution , 2005 .

[158]  Bin Zhao,et al.  Particle size distribution function of incipient soot in laminar premixed ethylene flames: effect of flame temperature , 2005 .

[159]  C. Sung,et al.  Effect of ferrocene addition on sooting limits in laminar premixed ethylene–oxygen–argon flames , 2004 .

[160]  Jingguang G. Chen,et al.  Thermal Stability of Flame-Synthesized Anatase TiO2 Nanoparticles , 2004 .

[161]  N. H. March,et al.  Change in Electronic Structure of Polyenes Due to Interaction with Polyacenes and with Graphitic Strips , 2004 .

[162]  Zhigang Li,et al.  Thermophoretic force and velocity of nanoparticles in the free molecule regime. , 2004, Physical review. E, Statistical, nonlinear, and soft matter physics.

[163]  Fred Wudl,et al.  Oligoacenes: Theoretical Prediction of Open-Shell Singlet Diradical Ground States [J. Am. Chem. Soc. 2004, 126, 7416−7417]. , 2004 .

[164]  R. P. Gupta,et al.  Oxide Materials for Development of Integrated Gas Sensors—A Comprehensive Review , 2004 .

[165]  P. Mcmurry,et al.  Measurement of Inherent Material Density of Nanoparticle Agglomerates , 2004 .

[166]  M. Maricq Size and charge of soot particles in rich premixed ethylene flames , 2004 .

[167]  Adel F. Sarofim,et al.  KINETIC MONTE CARLO–MOLECULAR DYNAMICS APPROACH TO MODEL SOOT INCEPTION , 2004 .

[168]  Ian M. Kennedy,et al.  Time-gated detection of europium nanoparticles in a microchannel-based environmental immunoassay , 2004, SPIE Micro + Nano Materials, Devices, and Applications.

[169]  Nicolae Barsan,et al.  Flame spray synthesis of tin dioxide nanoparticles for gas sensing , 2004 .

[170]  D. Kittelson,et al.  Kinetics and visualization of soot oxidation using transmission electron microscopy , 2004 .

[171]  R. V. Vander Wal,et al.  Carbon Nanostructure Examined by Lattice Fringe Analysis of High-Resolution Transmission Electron Microscopy Images , 2004, Applied spectroscopy.

[172]  J. Hansen,et al.  Soot climate forcing via snow and ice albedos. , 2004, Proceedings of the National Academy of Sciences of the United States of America.

[173]  T. Hertel,et al.  Interlayer cohesive energy of graphite from thermal desorption of polyaromatic hydrocarbons , 2003, cond-mat/0308451.

[174]  Hai Wang,et al.  Drag force, diffusion coefficient, and electric mobility of small particles. I. Theory applicable to the free-molecule regime. , 2003, Physical review. E, Statistical, nonlinear, and soft matter physics.

[175]  Hai Wang,et al.  Drag force, diffusion coefficient, and electric mobility of small particles. II. Application. , 2003, Physical review. E, Statistical, nonlinear, and soft matter physics.

[176]  Murray J. Thomson,et al.  Modeling soot formation in turbulent kerosene/air jet diffusion flames , 2003 .

[177]  M. Grätzel Dye-sensitized solar cells , 2003 .

[178]  O. Popovicheva,et al.  Microstructure and Water Adsorbability of Aircraft Combustor Soots and Kerosene Flame Soots: Toward an Aircraft-Generated Soot Laboratory Surrogate , 2003 .

[179]  Stephen J. Klippenstein,et al.  The Recombination of Propargyl Radicals and Other Reactions on a C6H6 Potential , 2003 .

[180]  Bin Zhao,et al.  Analysis of Soot Nanoparticles in a Laminar Premixed Ethylene Flame by Scanning Mobility Particle Sizer , 2003 .

[181]  F. Beretta,et al.  Monitoring of fuel consumption and aromatics formation in a kerosene spray flame as characterized by fluorescence spectroscopy. , 2003, Chemosphere.

[182]  Lutz Mädler,et al.  Nanoparticle synthesis at high production rates by flame spray pyrolysis , 2003 .

[183]  Michael Frenklach,et al.  Particle aggregation with simultaneous surface growth. , 2003, Physical review. E, Statistical, nonlinear, and soft matter physics.

[184]  Markus Kraft,et al.  Measurement and numerical simulation of soot particle size distribution functions in a laminar premixed ethylene-oxygen-argon flame , 2003 .

[185]  N. Kröger,et al.  Solid-state 29Si MAS NMR studies of diatoms: structural characterization of biosilica deposits , 2003, Analytical and bioanalytical chemistry.

[186]  M. Maricq,et al.  Soot size distributions in rich premixed ethylene flames , 2003 .

[187]  Alberto C. Barone,et al.  Morphological characterization of the early process of soot formation by atomic force microscopy , 2003 .

[188]  Prabir K. Dutta,et al.  TiO2-based sensor arrays modeled with nonlinear regression analysis for simultaneously determining CO and O2 concentrations at high temperatures , 2002 .

[189]  Tiziano Faravelli,et al.  Experimental formulation and kinetic model for JP-8 surrogate mixtures , 2002 .

[190]  J. Hansen,et al.  Climate Effects of Black Carbon Aerosols in China and India , 2002, Science.

[191]  W. Stark,et al.  Flame-nozzle synthesis of nanoparticles with closely controlled size, morphology and crystallinity , 2002 .

[192]  Sotiris E. Pratsinis,et al.  Aerosol flame reactors for manufacture of nanoparticles , 2002 .

[193]  M. Zachariah,et al.  Synthesis of Nanoporous Metal Oxide Particles by a New Inorganic Matrix Spray Pyrolysis Method , 2002 .

[194]  Michael Frenklach,et al.  Reaction mechanism of soot formation in flames , 2002 .

[195]  S. Pratsinis,et al.  Flame temperature measurements during electrically assisted aerosol synthesis of nanoparticles , 2002 .

[196]  Yuansheng Jiang,et al.  The Valence Bond Study for Benzenoid Hydrocarbons of Medium to Infinite Sizes , 2002 .

[197]  C. Sung,et al.  Development of comprehensive detailed and reduced reaction mechanisms for combustion modeling , 2002 .

[198]  S. Ramasesha,et al.  Structural and electronic instabilities in polyacenes: Density-matrix renormalization group study of a long-range interacting model , 2001, cond-mat/0110136.

[199]  S. Seifert,et al.  Spatially resolved small-angle x-ray scattering studies of soot inception and growth , 2002 .

[200]  Adel F. Sarofim,et al.  A fully integrated Kinetic Monte Carlo/Molecular Dynamics approach for the simulation of soot precursor growth , 2002 .

[201]  Michael Frenklach,et al.  Nucleation of soot: Molecular dynamics simulations of pyrene dimerization , 2002 .

[202]  Hai Wang,et al.  Small-angle neutron scattering of soot formed in laminar premixed ethylene flames , 2002 .

[203]  J. Houghton,et al.  Climate change 2001 : the scientific basis , 2001 .

[204]  David B. Kittelson,et al.  Size-Selected Nanoparticle Chemistry: Kinetics of Soot Oxidation , 2002 .

[205]  B. Stanmore,et al.  The oxidation of soot: a review of experiments, mechanisms and models , 2001 .

[206]  F. Stahl,et al.  The acenes: is there a relationship between aromatic stabilization and reactivity? , 2001, Organic letters.

[207]  W. Pryor,et al.  Role of free radicals in the toxicity of airborne fine particulate matter. , 2001, Chemical research in toxicology.

[208]  K N Houk,et al.  Polyacene and cyclacene geometries and electronic structures: bond equalization, vanishing band gaps, and triplet ground states contrast with polyacetylene. , 2001, The Journal of organic chemistry.

[209]  S. Klippenstein,et al.  The Recombination of Propargyl Radicals: Solving the Master Equation , 2001 .

[210]  M. Joannon,et al.  The relation between ultraviolet-excited fluorescence spectroscopy and aromatic species formed in rich laminar ethylene flames , 2001 .

[211]  L. Mädler,et al.  Flame Synthesis of Nanoparticles , 2001 .

[212]  M. Jacobson,et al.  Strong radiative heating due to the mixing state of black carbon in atmospheric aerosols , 2022 .

[213]  K. Pinkerton,et al.  Synthesis of an Ultrafine Iron and Soot Aerosol for the Evaluation of Particle Toxicity , 2001 .

[214]  William B. Whitten,et al.  Fullerene Evolution in Flame-Generated Soot , 2000 .

[215]  O. Boucher,et al.  Estimates of the direct and indirect radiative forcing due to tropospheric aerosols: A review , 2000 .

[216]  J S Lighty,et al.  Combustion Aerosols: Factors Governing Their Size and Composition and Implications to Human Health , 2000, Journal of the Air & Waste Management Association.

[217]  Heinz Pitsch,et al.  Unsteady Flamelet Modeling of Soot Formation in Turbulent Diffusion Flames , 2000 .

[218]  N. Glumac,et al.  Detection of AIO and TiO by Laser-Induced Fluorescence in Powder Synthesis Flames , 2000 .

[219]  Jack B. Howard,et al.  Formation of polycyclic aromatic hydrocarbons and their growth to soot—a review of chemical reaction pathways , 2000 .

[220]  R. L. Wal,et al.  Diffusion flame synthesis of single-walled carbon nanotubes , 2000 .

[221]  H. Bockhorn,et al.  Kinetic modeling of soot formation with detailed chemistry and physics: laminar premixed flames of C2 hydrocarbons , 2000 .

[222]  G. B. Rulev,et al.  Experimental characterization of aircraft combustor soot : Microstructure, surface area, porosity and water adsorption , 2000 .

[223]  William H. Green,et al.  Formation of polycyclic aromatic hydrocarbons and their radicals in a nearly sooting premixed benzene flame , 2000 .

[224]  A. Streitwieser,et al.  An ab initio study of electrophilic aromatic substitution , 1999 .

[225]  Piers M. Forster,et al.  The effect of human activity on radiative forcing of climate change: a review of recent developments , 1999 .

[226]  P. Roth,et al.  Synthesis of Al2O3 and SnO2 particles by oxidation of metalorganic precursors in premixed H2/O2/Ar low pressure flames , 1998 .

[227]  Glen R. Cass,et al.  Source contributions to atmospheric fine carbon particle concentrations , 1998 .

[228]  Robert A. Fletcher,et al.  The evolution of soot precursor particles in a diffusion flame , 1998 .

[229]  Klaus-Heinrich Homann,et al.  Fullerenes and Soot Formation- New Pathways to Large Particles in Flames. , 1998, Angewandte Chemie.

[230]  N. A. Kakutkina,et al.  Ice nucleation on soot particles , 1998 .

[231]  U. Schumann,et al.  Ultrafine aerosol particles in aircraft plumes: In situ observations , 1998 .

[232]  D. Kittelson Engines and nanoparticles: a review , 1998 .

[233]  V. Ramaswamy,et al.  Global sensitivity studies of the direct radiative forcing due to anthropogenic sulfate and black carbon aerosols , 1998 .

[234]  Sotiris E. Pratsinis,et al.  Flame aerosol synthesis of ceramic powders , 1998 .

[235]  J. Nagy,et al.  C60, C60O, C70 and C70O fullerene formations in premixed benzene-oxygen flames , 1998 .

[236]  Margaret S. Wooldridge,et al.  Gas-phase combustion synthesis of particles , 1998 .

[237]  J. Banfield,et al.  Thermodynamic analysis of phase stability of nanocrystalline titania , 1998 .

[238]  Michael Frenklach,et al.  Monte carlo simulation of soot aggregation with simultaneous surface growth-why primary particles appear spherical , 1998 .

[239]  R. Raghavan,et al.  In Situ Fourier Transform Infrared Characterization of the Effect of Electrical Fields on the Flame Synthesis of TiO2 Particles , 1997 .

[240]  M. Frenklach,et al.  A detailed kinetic modeling study of aromatics formation in laminar premixed acetylene and ethylene flames , 1997 .

[241]  D. E. Rosner,et al.  Soot volume fraction and temperature measurements in laminar nonpremixed flames using thermocouples , 1997 .

[242]  Andrew E. Lutz,et al.  OPPDIF: A Fortran program for computing opposed-flow diffusion flames , 1997 .

[243]  F. Egolfopoulos,et al.  Wall effects on the propagation and extinction of steady, strained, laminar premixed flames , 1997 .

[244]  Ian M. Kennedy,et al.  Models of soot formation and oxidation , 1997 .

[245]  A. Hepp Covalent ceramics III - science and technology of non-oxides : symposium held November 27-30, 1995, Boston, Massachusetts, U.S.A. , 1996 .

[246]  Fujita,et al.  Edge state in graphene ribbons: Nanometer size effect and edge shape dependence. , 1996, Physical review. B, Condensed matter.

[247]  J. Katz,et al.  Titania and silica powders produced in a counterflow diffusion flame , 1996 .

[248]  U. Schumann,et al.  The Initial Composition of Jet Condensation Trails , 1996 .

[249]  Michael Grätzel,et al.  Low cost photovoltaic modules based on dye sensitized nanocrystalline titanium dioxide and carbon powder , 1996 .

[250]  Robert C. Brown,et al.  Aerosol dynamics in near‐field aircraft plumes , 1996 .

[251]  K. Kusakabe,et al.  Peculiar Localized State at Zigzag Graphite Edge , 1996 .

[252]  J. T. Mckinnon,et al.  Infrared analysis of flame-generated PAH samples , 1996 .

[253]  M. Frenklach,et al.  Silicon Particle Formation in Pyrolysis of Silane and Disilane , 1996 .

[254]  Wenhua H. Zhu,et al.  The role of gas mixing in flame synthesis of titania powders , 1996 .

[255]  K. Hadjiivanov,et al.  Surface chemistry of titania (anatase) and titania-supported catalysts , 1996 .

[256]  C. Sung,et al.  Experiments and numerical simulation on soot formation in opposed-jet ethylene diffusion flames , 1996 .

[257]  M. Colvin,et al.  Reaction mechanisms in aromatic hydrocarbon formation involving the C5H5 cyclopentadienyl moiety , 1996 .

[258]  J. Yates,et al.  Photocatalysis on TiO2 Surfaces: Principles, Mechanisms, and Selected Results , 1995 .

[259]  Wolfgang Koch,et al.  Chronic Inhalation Exposure of Wistar Rats and two Different Strains of Mice to Diesel Engine Exhaust, Carbon Black, and Titanium Dioxide , 1995 .

[260]  R. Fletcher,et al.  Laser microprobe analysis of soot precursor particles and carbonaceous soot , 1995 .

[261]  M. Frenklach,et al.  Detailed modeling of soot formation in laminar premixed ethylene flames at a pressure of 10 bar , 1995 .

[262]  G. Müller,et al.  The Scientific Basis , 1995 .

[263]  Henning Bockhorn,et al.  Soot Formation in Combustion: Mechanisms and Models , 1994 .

[264]  M. Frenklach,et al.  Calculations of rate coefficients for the chemically activated reactions of acetylene with vinylic and aromatic radicals , 1994 .

[265]  E. Feigelson,et al.  INDUCED NUCLEATION OF CARBON DUST IN RED GIANT STARS , 1994 .

[266]  D. Klein Graphitic polymer strips with edge states , 1994 .

[267]  M. Frenklach,et al.  Transport properties of polycyclic aromatic hydrocarbons for flame modeling , 1994 .

[268]  F. Egolfopoulos Geometric and radiation effects on steady and unsteady strained laminar flames , 1994 .

[269]  D. Dockery,et al.  An association between air pollution and mortality in six U.S. cities. , 1993, The New England journal of medicine.

[270]  Kobayashi,et al.  Electronic structure of a stepped graphite surface. , 1993, Physical review. B, Condensed matter.

[271]  Michael Frenklach,et al.  Enthalpies of Formation of Benzenoid Aromatic Molecules and Radicals , 1993 .

[272]  H. Horvath Atmospheric light absorption : a review , 1993 .

[273]  J. Longwell,et al.  Metal enhanced soot and PAH formation , 1993 .

[274]  James A. Miller,et al.  Kinetic and thermodynamic issues in the formation of aromatic compounds in flames of aliphatic fuels , 1992 .

[275]  J. T. Mckinnon,et al.  Combustion synthesis of fullerenes , 1992 .

[276]  M. Grätzel,et al.  A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films , 1991, Nature.

[277]  R. Sausen,et al.  Climate response to smoke from the burning oil wells in Kuwait , 1991, Nature.

[278]  Wang,et al.  Detailed surface and gas-phase chemical kinetics of diamond deposition. , 1991, Physical review. B, Condensed matter.

[279]  M. Frenklach,et al.  Detailed modeling of soot particle nucleation and growth , 1991 .

[280]  J. H. Miller The kinetics of polynuclear aromatic hydrocarbon agglomeration in flames , 1991 .

[281]  J. Howard Carbon addition and oxidation reactions in heterogeneous combustion and soot formation , 1991 .

[282]  S. Harris Mechanism for diamond growth from methyl radicals , 1990 .

[283]  P. R. Westmoreland,et al.  Forming benzene in flames by chemically activated isomerization , 1989 .

[284]  M. Frenklach,et al.  Formation of silicon carbide particles behind shock waves , 1989 .

[285]  S. Stein,et al.  Reactions of vinyl and phenyl radicals with ethyne, ethene and benzene , 1989 .

[286]  I. Glassman Soot formation in combustion processes , 1989 .

[287]  Stephen J. Harris,et al.  Measurement of stable species present during filament‐assisted diamond growth , 1988 .

[288]  Michael Frenklach,et al.  Growth mechanism of vapor-deposited diamond , 1988 .

[289]  Ishwar K. Puri,et al.  A comparison between numerical calculations and experimental measurements of the structure of a counterflow diffusion flame burning diluted methane in diluted air , 1988 .

[290]  Adel F. Sarofim,et al.  The effects of ferrocene addition on soot particle inception and growth in premixed ethylene flames , 1987 .

[291]  Michael Frenklach,et al.  Detailed Modeling of PAH Profiles in a Sooting Low-Pressure Acetylene Flame , 1987 .

[292]  D. W. Clary,et al.  Mechanism of Soot Formation in Acetylene-Oxygen Mixtures , 1986 .

[293]  S. Harris,et al.  Soot particle inception kinetics in a premixed ethylene flame , 1986 .

[294]  Anthony M. Dean,et al.  Predictions of pressure and temperature effects upon radical addition and recombination reactions , 1985 .

[295]  Stephen E. Stein,et al.  High-temperature stabilities of hydrocarbons , 1985 .

[296]  A. M. Weiner,et al.  CHEMICAL KINETICS OF SOOT PARTICLE GROWTH , 1985 .

[297]  K. H. Homann,et al.  Formation of large molecules, particulates and ions in premixed hydrocarbon flames; Progress and unresolved questions , 1985 .

[298]  Stephen E. Stein,et al.  Detailed kinetic modeling of soot formation in shock-tube pyrolysis of acetylene , 1985 .

[299]  S. Harris,et al.  Soot Particle Growth in Premixed Toluene/Ethylene Flames , 1984 .

[300]  Patricia Layman,et al.  French Chemical Industry Completes Massive Restructuring: Regrouping of activities has greatly simplified industry's tangled structure; question remains if and when move will translate into higher profits , 1984 .

[301]  S. Kivelson,et al.  Polyacene and a new class of quasi-one-dimensional conductors , 1983 .

[302]  H. Bockhorn,et al.  Investigation of the formation of high molecular hydrocarbons and soot in premixed hydrocarbon-oxygen flames , 1983 .

[303]  S. Harris,et al.  Determination of the Rate Constant for Soot Surface Growth , 1983 .

[304]  Stephen J. Harris,et al.  Surface Growth of Soot Particles in Premixed Ethylene/Air Flames , 1983 .

[305]  O. Raabe,et al.  Re-evaluation of millikan's oil drop data for the motion of small particles in air , 1982 .

[306]  H. F. Calcote Mechanisms of soot nucleation in flames—A critical review , 1981 .

[307]  R. Sustmann,et al.  Mechanistic Aspects of Diels‐Alder Reactions: A Critical Survey , 1980 .

[308]  W. C. Herndon The Diels-Alder reaction. A quantitative probe for resonance energies , 1977 .

[309]  G. D. Ulrich,et al.  Particle Growth in Flames. II: Experimental Results for Silica Particles , 1976 .

[310]  A. Fujishima,et al.  Electrochemical Photolysis of Water at a Semiconductor Electrode , 1972, Nature.

[311]  R. Friedel,et al.  Electron spin resonance in American coals , 1968 .

[312]  L. B. Scott,et al.  The reaction of anthracene with maleic and fumaric acid and their derivatives and with citraconic anhydride and mesaconic acid. , 1948, Journal of the American Chemical Society.

[313]  E. M.,et al.  Statistical Mechanics , 2021, Manual for Theoretical Chemistry.

[314]  William Thomson,et al.  Mathematical and physical papers , 1880 .

[315]  M. Knudsen,et al.  Luftwiderstand gegen die langsame Bewegung kleiner Kugeln , 1911 .

[316]  E. Cunningham On the Velocity of Steady Fall of Spherical Particles through Fluid Medium , 1910 .