Quantifying trace gas uptake to tropospheric aerosol: recent advances and remaining challenges.
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[1] D. Knopf,et al. Heterogeneous oxidation kinetics of organic biomass burning aerosol surrogates by O3, NO2, N2O5, and NO3. , 2011, Physical chemistry chemical physics : PCCP.
[2] M. J. Evans,et al. Parameterisation and impact of aerosol uptake of HO 2 on a global tropospheric model , 2011 .
[3] Ulrich Pöschl,et al. Glass transition and phase state of organic compounds: dependency on molecular properties and implications for secondary organic aerosols in the atmosphere. , 2011, Physical chemistry chemical physics : PCCP.
[4] J. Seinfeld,et al. Analysis of photochemical and dark glyoxal uptake: Implications for SOA formation , 2011 .
[5] Daphne L. Che,et al. Variations in organic aerosol optical and hygroscopic properties upon heterogeneous OH oxidation , 2011 .
[6] Geoffrey D Smith,et al. Artifacts in measuring aerosol uptake kinetics: the roles of time, concentration and adsorption , 2011 .
[7] F. Keutsch,et al. Glyoxal in aqueous ammonium sulfate solutions: products, kinetics and hydration effects. , 2011, Environmental science & technology.
[8] Ulrich Pöschl,et al. Gas uptake and chemical aging of semisolid organic aerosol particles , 2011, Proceedings of the National Academy of Sciences.
[9] M. Ammann,et al. Increased steady state uptake of ozone on soot due to UV/Vis radiation , 2011 .
[10] H. Allen,et al. Phase-sensitive sum frequency revealing accommodation of bicarbonate ions, and charge separation of sodium and carbonate ions within the air/water interface. , 2011, The journal of physical chemistry. A.
[11] A. Bertram,et al. Reactive uptake kinetics of NO3 on multicomponent and multiphase organic mixtures containing unsaturated and saturated organics. , 2011, Physical chemistry chemical physics : PCCP.
[12] U. Pöschl,et al. The role of long-lived reactive oxygen intermediates in the reaction of ozone with aerosol particles. , 2011, Nature chemistry.
[13] C. Chan,et al. Enhanced Reactive Uptake of Nonanal by Acidic Aerosols in the Presence of Particle-Phase Organics , 2011 .
[14] J. Abbatt,et al. Formation of gas-phase bromine from interaction of ozone with frozen and liquid NaCl/NaBr solutions: quantitative separation of surficial chemistry from bulk-phase reaction. , 2011, The journal of physical chemistry. A.
[15] P. Bhave,et al. Heterogeneous Atmospheric Chemistry, Ambient Measurements, and Model Calculations of N2O5: A Review , 2011 .
[16] R. Linker,et al. Heterogeneous oxidation of the insecticide cypermethrin as thin film and airborne particles by hydroxyl radicals and ozone. , 2011, Physical chemistry chemical physics : PCCP.
[17] B. Rappenglück,et al. Vertical profiles of nitrous acid in the nocturnal urban atmosphere of Houston, TX , 2010 .
[18] J. Abbatt,et al. Kinetics of N(2)O(5) hydrolysis on secondary organic aerosol and mixed ammonium bisulfate-secondary organic aerosol particles. , 2010, The journal of physical chemistry. A.
[19] B. Dix,et al. Ship-based detection of glyoxal over the remote tropical Pacific Ocean , 2010 .
[20] B. Turpin,et al. Aqueous chemistry and its role in secondary organic aerosol (SOA) formation , 2010 .
[21] Charles E. Kolb,et al. An overview of current issues in the uptake of atmospheric trace gases by aerosols and clouds , 2010 .
[22] Allen L. Robinson,et al. A two-dimensional volatility basis set: 1. organic-aerosol mixing thermodynamics , 2010 .
[23] Ulrich Pöschl,et al. An amorphous solid state of biogenic secondary organic aerosol particles , 2010, Nature.
[24] R. Volkamer,et al. Glyoxal processing by aerosol multiphase chemistry: towards a kinetic modeling framework of secondary organic aerosol formation in aqueous particles , 2010 .
[25] J. Abbatt,et al. Heterogeneous oxidation of atmospheric aerosol particles by gas-phase radicals. , 2010, Nature chemistry.
[26] Jared D. Smith,et al. Chemical sinks of organic aerosol: kinetics and products of the heterogeneous oxidation of erythritol and levoglucosan. , 2010, Environmental science & technology.
[27] M. Evans,et al. Sensitivity of a global model to the uptake of N 2 O 5 by tropospheric aerosol , 2010 .
[28] Alan Fried,et al. Chemistry of hydrogen oxide radicals (HO x ) in the Arctic troposphere in spring , 2010 .
[29] J. Abbatt,et al. Chemical evolution of secondary organic aerosol from OH-initiated heterogeneous oxidation , 2010 .
[30] John H. Seinfeld,et al. Organic aerosol components observed in Northern Hemispheric datasets from Aerosol Mass Spectrometry , 2010 .
[31] H. Akimoto,et al. Kinetics of HO2 Uptake in Levoglucosan and Polystyrene Latex Particles , 2010 .
[32] J. Crowley,et al. Uptake of NO3 and N2O5 to Saharan dust, ambient urban aerosol and soot: A relative rate study , 2010 .
[33] J. Thornton,et al. A large atomic chlorine source inferred from mid-continental reactive nitrogen chemistry , 2010, Nature.
[34] D. Donaldson,et al. Adsorption and reaction of trace gas-phase organic compounds on atmospheric water film surfaces: a critical review. , 2010, Environmental science & technology.
[35] D. R. Worsnop,et al. Evolution of Organic Aerosols in the Atmosphere , 2009, Science.
[36] J. Burrows,et al. The continental source of glyoxal estimated by the synergistic use of spaceborne measurements and inverse modelling , 2009 .
[37] J. Thornton,et al. Toward a general parameterization of N 2 O 5 reactivity on aqueous particles: the competing effects of particle liquid water, nitrate and chloride , 2009 .
[38] A. Robinson,et al. Effective rate constants and uptake coefficients for the reactions of organic molecular markers (n-alkanes, hopanes, and steranes) in motor oil and diesel primary organic aerosols with hydroxyl radicals. , 2009, Environmental science & technology.
[39] B. Turpin,et al. Effects of Precursor Concentration and Acidic Sulfate in Aqueous Glyoxal−OH Radical Oxidation and Implications for Secondary Organic Aerosol , 2009, Environmental science & technology.
[40] N. Riemer,et al. Detailed heterogeneous chemistry in an urban plume box model: reversible co-adsorption of O 3 , NO 2 , and H 2 O on soot coated with benzo(a)pyrene , 2009 .
[41] A. Vlasenko,et al. Modification of cloud condensation nucleus activity of organic aerosols by hydroxyl radical heterogeneous oxidation , 2009 .
[42] C. Wagner,et al. An aerosol flow tube study of the interaction of N2O5 with calcite, Arizona dust and quartz , 2009 .
[43] A. Ravishankara,et al. Laboratory studies of products of N2O5 uptake on Cl− containing substrates , 2009 .
[44] J. Thornton,et al. Direct observations of N2O5 reactivity on ambient aerosol particles , 2009 .
[45] D. Donaldson,et al. Photoenhanced ozone loss on solid pyrene films. , 2009, Physical chemistry chemical physics : PCCP.
[46] A. Bertram,et al. Reactive uptake studies of NO3 and N2O5 on alkenoic acid, alkanoate, and polyalcohol substrates to probe nighttime aerosol chemistry. , 2009, Physical chemistry chemical physics : PCCP.
[47] E. Loukhovitskaya,et al. Laboratory study of the interaction of HO2 radicals with the NaCl, NaBr, MgCl(2).6H2O and sea salt surfaces. , 2009, Physical chemistry chemical physics : PCCP.
[48] M. Ammann,et al. Kinetics of the heterogeneous reaction of nitric acid with mineral dust particles: an aerosol flowtube study. , 2009, Physical chemistry chemical physics : PCCP.
[49] B. Finlayson‐Pitts. Reactions at surfaces in the atmosphere: integration of experiments and theory as necessary (but not necessarily sufficient) for predicting the physical chemistry of aerosols. , 2009, Physical chemistry chemical physics : PCCP.
[50] Jared D. Smith,et al. Measurement of fragmentation and functionalization pathways in the heterogeneous oxidation of oxidized organic aerosol. , 2009, Physical chemistry chemical physics : PCCP.
[51] P. T. Griffiths,et al. Temperature dependence of heterogeneous uptake of N2O5 by ammonium sulfate aerosol , 2009 .
[52] A. Wisthaler,et al. Light‐induced ozone depletion by humic acid films and submicron aerosol particles , 2009 .
[53] J. Thornton,et al. An experimental technique for the direct measurement of N 2 O 5 reactivity on ambient particles , 2009 .
[54] Jared D. Smith,et al. The heterogeneous reaction of hydroxyl radicals with sub-micron squalane particles: a model system for understanding the oxidative aging of ambient aerosols , 2009 .
[55] A. Ravishankara,et al. Reactive uptake coefficients for N2O5 determined from aircraft measurements during the Second Texas Air Quality Study: Comparison to current model parameterizations , 2009 .
[56] R. A. Cox,et al. Reactive uptake of N2O5 by aerosols containing dicarboxylic acids. Effect of particle phase, composition, and nitrate content. , 2009, The journal of physical chemistry. A.
[57] Geoffrey D Smith,et al. The importance of phase in the radical-initiated oxidation of model organic aerosols: reactions of solid and liquid brassidic acid particles. , 2009, Physical chemistry chemical physics : PCCP.
[58] H. Akimoto,et al. Heterogeneous loss of HO2 by KCl, synthetic sea salt, and natural seawater aerosol particles , 2009 .
[59] D. Donaldson,et al. Photoenhanced Reaction of Ozone with Chlorophyll at the Seawater Surface , 2009 .
[60] J. Abbatt,et al. Heterogeneous Loss of Gas-Phase Ozone on n-Hexane Soot Surfaces: Similar Kinetics to Loss on Other Chemically Unsaturated Solid Surfaces† , 2009 .
[61] A. Córdova,et al. Products and kinetics of the liquid-phase reaction of glyoxal catalyzed by ammonium ions (NH4(+)). , 2009, The journal of physical chemistry. A.
[62] John H. Seinfeld,et al. the Creative Commons Attribution 3.0 License. Atmospheric Chemistry , 2008 .
[63] Trent M. Hare,et al. Surface processes recorded by rocks and soils on Meridiani Planum, Mars: Microscopic Imager observations during Opportunity's first three extended missions , 2008 .
[64] J. Abbatt,et al. Heterogeneous nitration reactions of polycyclic aromatic hydrocarbons and n-hexane soot by exposure to NO3/NO2/N2O5 , 2008 .
[65] J. Thornton,et al. Heterogeneous OH oxidation of palmitic acid in single component and internally mixed aerosol particles: vaporization and the role of particle phase , 2008 .
[66] K. Stemmler,et al. The effect of fatty acid surfactants on the uptake of nitric acid to deliquesced NaCl aerosol , 2008 .
[67] C. Brühl,et al. The influence of natural and anthropogenic secondary sources on the glyoxal global distribution , 2008 .
[68] A. Ravishankara,et al. N2O5 Oxidizes Chloride to Cl2 in Acidic Atmospheric Aerosol , 2008, Science.
[69] Rainer Volkamer,et al. Secondary Organic Aerosol Formation from Acetylene (C 2 H 2 ): seed effect on SOA yields due to organic photochemistry in the aerosol aqueous phase , 2008 .
[70] Jay Slowik,et al. Chemical aging of ambient organic aerosol from heterogeneous reaction with hydroxyl radicals , 2008 .
[71] A. L. Corrigan,et al. Uptake of glyoxal by organic and Inorganic aerosol. , 2008, Environmental science & technology.
[72] A. Ravishankara,et al. High levels of nitryl chloride in the polluted subtropical marine boundary layer , 2008 .
[73] A. Bertram,et al. Reactive uptake of N2O5 on aqueous H2SO4 solutions coated with 1-component and 2-component monolayers. , 2008, The journal of physical chemistry. A.
[74] Jonathan P. Reid,et al. Optical manipulation and characterisation of aerosol particles using a single-beam gradient force optical trap. , 2008, Chemical Society reviews.
[75] J. Thornton,et al. Assessing known pathways for HO2loss in aqueous atmospheric aerosols: Regional and global impacts on tropospheric oxidants: HO2HETEROGENEOUS CHEMISTRY , 2008 .
[76] A. Bertram,et al. Reactive uptake of NO3, N2O5, NO2, HNO3, and O3 on three types of polycyclic aromatic hydrocarbon surfaces. , 2008, The journal of physical chemistry. A.
[77] H. Akimoto,et al. Kinetics of heterogeneous reactions of HO2 radical at ambient concentration levels with (NH4)2SO4 and NaCl aerosol particles. , 2008, The journal of physical chemistry. A.
[78] A. Bertram,et al. N2O5 reactive uptake on aqueous sulfuric acid solutions coated with branched and straight-chain insoluble organic surfactants. , 2008, The journal of physical chemistry. A.
[79] A. Vlasenko,et al. Formation of volatile organic compounds in the heterogeneous oxidation of condensed-phase organic films by gas-phase OH. , 2008, The journal of physical chemistry. A.
[80] Christian George,et al. Photosensitized heterogeneous chemistry of ozone on organic films. , 2008, The journal of physical chemistry. A.
[81] M. Rossi. Evaluated kinetic and photochemical data for atmospheric chemistry , 2010 .
[82] John P. Burrows,et al. Global budgets of atmospheric glyoxal and methylglyoxal, and implications for formation of secondary organic aerosols , 2007 .
[83] D. Donaldson,et al. Role of the aerosol substrate in the heterogeneous ozonation reactions of surface-bound PAHs. , 2007, The journal of physical chemistry. A.
[84] Y. Liu,et al. Kinetic study of heterogeneous reaction of deliquesced NaCl particles with gaseous HNO3 using particle-on-substrate stagnation flow reactor approach. , 2007, The journal of physical chemistry. A.
[85] C. Wagner,et al. The interaction of N 2 O 5 with mineral dust: aerosol flow tube and Knudsen reactor studies , 2007 .
[86] J. Slowik,et al. Heterogeneous oxidation of saturated organic aerosols by hydroxyl radicals: uptake kinetics, condensed-phase products, and particle size change , 2007 .
[87] R. A. Cox,et al. Heterogeneous reactions of HOI, ICl and IBr on sea salt and sea salt proxies. , 2007, Physical chemistry chemical physics : PCCP.
[88] B. Finlayson‐Pitts,et al. A new approach to studying aqueous reactions using diffuse reflectance infrared Fourier transform spectrometry: application to the uptake and oxidation of SO2 on OH-processed model sea salt aerosol. , 2007, Physical chemistry chemical physics : PCCP.
[89] S. Park,et al. The inhibition of N2O5 hydrolysis in sulfuric acid by 1-butanol and 1-hexanol surfactant coatings. , 2007, The journal of physical chemistry. A.
[90] Andrew T Lambe,et al. Controlled OH radical production via ozone-alkene reactions for use in aerosol aging studies. , 2007, Environmental science & technology.
[91] J. Thornton,et al. The oxidation of oleate in submicron aqueous salt aerosols: evidence of a surface process. , 2007, The journal of physical chemistry. A.
[92] V. Grassian,et al. Heterogeneous conversion of calcite aerosol by nitric acid. , 2007, Physical chemistry chemical physics : PCCP.
[93] V. Grassian,et al. Heterogeneous uptake of ozone on reactive components of mineral dust aerosol: an environmental aerosol reaction chamber study. , 2006, The journal of physical chemistry. A.
[94] V. Grassian,et al. N2O5 hydrolysis on the components of mineral dust and sea salt aerosol: Comparison study in an environmental aerosol reaction chamber , 2006 .
[95] M. Petters,et al. Chemical aging and the hydrophobic‐to‐hydrophilic conversion of carbonaceous aerosol , 2006 .
[96] J. Hearn,et al. A mixed‐phase relative rates technique for measuring aerosol reaction kinetics , 2006 .
[97] M. Molina,et al. Secondary organic aerosol formation from anthropogenic air pollution: Rapid and higher than expected , 2006 .
[98] Astrid Kiendler-Scharr,et al. On the reactive uptake of gaseous compounds by organic-coated aqueous aerosols: theoretical analysis and application to the heterogeneous hydrolysis of N2O5. , 2006, The journal of physical chemistry. A.
[99] B. Anderson,et al. On the flux of oxygenated volatile organic compounds from organic aerosol oxidation , 2006 .
[100] D. Donaldson,et al. Heterogeneous ozonation kinetics of polycyclic aromatic hydrocarbons on organic films , 2006 .
[101] M. Johnston,et al. Reactive uptake of nitric acid onto sodium chloride aerosols across a wide range of relative humidities. , 2006, The journal of physical chemistry. A.
[102] J. Thornton,et al. The effect of varying levels of surfactant on the reactive uptake of N 2 O 5 to aqueous aerosol , 2006 .
[103] D. Worsnop,et al. Mass accommodation and chemical reactions at gas-liquid interfaces. , 2006, Chemical reviews.
[104] Allen L. Robinson,et al. Photochemical oxidation and changes in molecular composition of organic aerosol in the regional context , 2006 .
[105] P. Ziemann,et al. Reaction of oleic acid particles with NO3 radicals: Products, mechanism, and implications for radical-initiated organic aerosol oxidation. , 2006, The journal of physical chemistry. A.
[106] R. A. Cox,et al. Reactive uptake of N2O5 by aerosol particles containing mixtures of humic acid and ammonium sulfate. , 2006, The journal of physical chemistry. A.
[107] A. Ravishankara,et al. Variability in Nocturnal Nitrogen Oxide Processing and Its Role in Regional Air Quality , 2006, Science.
[108] R. Vogt,et al. Kinetics and mechanism of the uptake of N 2 O 5 on mineral dust at 298 K , 2005 .
[109] John H. Seinfeld,et al. Chamber studies of secondary organic aerosol growth by reactive uptake of simple carbonyl compounds , 2005 .
[110] James F. Pankow,et al. Thermodynamics of the formation of atmospheric organic particulate matter by accretion reactions—2. Dialdehydes, methylglyoxal, and diketones , 2005 .
[111] Mark J. Rood,et al. Impact of particulate organic matter on the relative humidity dependence of light scattering: A simplified parameterization , 2005 .
[112] C. Santschi,et al. The heterogeneous chemical kinetics of N 2 O 5 on CaCO 3 and other atmospheric mineral dust surrogates , 2005 .
[113] J. Thornton,et al. N(2)O(5) reaction on submicron sea salt aerosol: kinetics, products, and the effect of surface active organics. , 2005, The journal of physical chemistry. A.
[114] John H. Seinfeld,et al. Global impacts of gas‐phase chemistry‐aerosol interactions on direct radiative forcing by anthropogenic aerosols and ozone , 2005 .
[115] B. C. Garrett,et al. Molecular dynamics simulations of atmospheric oxidants at the air-water interface: solvation and accommodation of OH and O3. , 2005, The journal of physical chemistry. B.
[116] Paul Ginoux,et al. Response of a coupled chemistry‐climate model to changes in aerosol emissions: Global impact on the hydrological cycle and the tropospheric burdens of OH, ozone, and NOx , 2005 .
[117] J. Lelieveld,et al. Observations and model calculations of trace gas scavenging in a dense Saharan dust plume during MINATROC , 2005 .
[118] Tami C. Bond,et al. Export efficiency of black carbon aerosol in continental outflow: Global implications , 2005 .
[119] Robert McLaren,et al. Reactive uptake of glyoxal by particulate matter , 2005 .
[120] Kimberly A Prather,et al. Recent advances in our understanding of atmospheric chemistry and climate made possible by on-line aerosol analysis instrumentation. , 2005, Analytical chemistry.
[121] D. Jacob,et al. Impact of new laboratory studies of N2O5 hydrolysis on global model budgets of tropospheric nitrogen oxides, ozone, and OH , 2005, Geophysical Research Letters.
[122] J. Thornton,et al. Measurements of HO2 uptake to aqueous aerosol: Mass accommodation coefficients and net reactive loss , 2005 .
[123] Y. Rudich,et al. Kinetic model framework for aerosol and cloud surface chemistry and gas-particle interactions – Part 1: General equations, parameters, and terminology , 2005 .
[124] U. Pöschl,et al. Kinetic model framework for aerosol and cloud surface chemistry and gas-particle interactions: Part 2 ? exemplary practical applications and numerical simulations , 2005 .
[125] Robert McLaren,et al. Heterogeneous reactions of glyoxal on particulate matter: identification of acetals and sulfate esters. , 2005, Environmental science & technology.
[126] T. Thornberry,et al. Heterogeneous reaction of ozone with liquid unsaturated fatty acids: detailed kinetics and gas-phase product studies , 2004 .
[127] J. Thornton,et al. Kinetics of Surface-Bound Benzo[a]pyrene and Ozone on Solid Organic and Salt Aerosols , 2004 .
[128] D. Tobias,et al. Formation of Molecular Bromine from the Reaction of Ozone with Deliquesced NaBr Aerosol: Evidence for Interface Chemistry , 2004 .
[129] John Vieceli,et al. Interaction of Gas-Phase Ozone at 296 K with Unsaturated Self-Assembled Monolayers: A New Look at an Old System , 2004 .
[130] V. Vaida,et al. Kinetics and products of the reaction of gas-phase ozone with anthracene adsorbed at the air–aqueous interface , 2004 .
[131] M. Molina,et al. Atmospheric evolution of organic aerosol , 2004 .
[132] D. Worsnop,et al. Comment on ``The NH3Mass Accommodation Coefficient for Uptake onto Sulfuric Acid Solution'' , 2004 .
[133] E. Kosciuch,et al. Reply to “Comment on ‘The NH3 Mass Accommodation Coefficient for Uptake onto Sulfuric Acid Solutions'” , 2004 .
[134] R. A. Cox,et al. Reactive uptake coefficients for heterogeneous reaction of N 2 O 5 with submicron aerosols of NaCl and natural sea salt , 2004 .
[135] D. Jacob,et al. Testing fast photochemical theory during TRACE‐P based on measurements of OH, HO2, and CH2O , 2004 .
[136] M. Johnston,et al. Reactive Uptake of Nitric Acid into Aqueous Sodium Chloride Droplets Using Real-Time Single-Particle Mass Spectrometry , 2004 .
[137] D. Hauglustaine,et al. Global modeling of heterogeneous chemistry on mineral aerosol surfaces: Influence on tropospheric ozone chemistry and comparison to observations , 2004 .
[138] Y. Djikaev,et al. Effect of adsorption on the uptake of organic trace gas by cloud droplets , 2003 .
[139] D. Donaldson,et al. Direct Observation of the Kinetics of an Atmospherically Important Reaction at the Air−Aqueous Interface , 2003 .
[140] P. Jungwirth,et al. Impact, Trapping, and Accommodation of Hydroxyl Radical and Ozone at Aqueous Salt Aerosol Surfaces. A Molecular Dynamics Study , 2003 .
[141] D. Jacob,et al. Peroxy radical behavior during the Transport and Chemical Evolution over the Pacific (TRACE-P) campaign as measured aboard the NASA P-3B aircraft , 2003 .
[142] B. Finlayson‐Pitts. The tropospheric chemistry of sea salt: a molecular-level view of the chemistry of NaCl and NaBr. , 2003, Chemical reviews.
[143] Roger E. Miller,et al. Aerosol Uptake Described by Numerical Solution of the Diffusion−Reaction Equations in the Particle , 2003 .
[144] J. Abbatt,et al. Interactions of atmospheric trace gases with ice surfaces: adsorption and reaction. , 2003, Chemical reviews.
[145] J. Thornton,et al. N2O5 hydrolysis on sub-micron organic aerosols: the effect of relative humidity, particle phase, and particle size , 2003 .
[146] B. Finlayson‐Pitts,et al. Knudsen Cell Studies of the Reaction of Gaseous HNO3 with NaCl Using Less than a Single Layer of Particles at 298 K: A Modified Mechanism , 2003 .
[147] Y. Rudich. Laboratory perspectives on the chemical transformations of organic matter in atmospheric particles. , 2003, Chemical reviews.
[148] R. A. Cox,et al. Hydrolysis of N2O5 on sub-micron mineral salt aerosols , 2003 .
[149] F. Wania,et al. Is vapor pressure or the octanol-air partition coefficient a better descriptor of the partitioning between gas phase and organic matter? , 2003 .
[150] Andreas Wahner,et al. Influence of an organic coating on the reactivity of aqueous aerosols probed by the heterogeneous hydrolysis of N2O5 , 2003 .
[151] D. R. Hanson,et al. The NH3 Mass Accommodation Coefficient for Uptake onto Sulfuric Acid Solutions , 2003 .
[152] B. Vogel,et al. Impact of the heterogeneous hydrolysis of N2O5 on chemistry and nitrate aerosol formation in the lower troposphere under photosmog conditions , 2003 .
[153] R. Martin,et al. Global and regional decreases in tropospheric oxidants from photochemical effects of aerosols , 2003 .
[154] Y. Rudich,et al. Effects of reversible adsorption and Langmuir–Hinshelwood surface reactions on gas uptake by atmospheric particles , 2003 .
[155] C. Guimbaud,et al. Uptake of HNO 3 to deliquescent sea-salt particles: a study using the short-lived radioactive isotope tracer 13 N , 2002 .
[156] D. Worsnop,et al. A chemical kinetic model for reactive transformations of aerosol particles , 2002 .
[157] J. Jimenez,et al. Kinetics of submicron oleic acid aerosols with ozone: A novel aerosol mass spectrometric technique , 2002 .
[158] Y. Rudich,et al. Reactive uptake of NO3 by liquid and frozen organics , 2002 .
[159] M. Frankowski,et al. Ionization and hydrolysis of dinitrogen pentoxide in low-temperature solids , 2001 .
[160] Y. Rudich,et al. Uptake of Cl and Br by organic surfaces—A perspective on organic aerosols processing by tropospheric oxidants , 2001 .
[161] Guy P. Brasseur,et al. Effects of aerosols on tropospheric oxidants: A global model study , 2001 .
[162] M. Molina,et al. The Reaction Probability of OH on Organic Surfaces of Tropospheric Interest , 2001 .
[163] M. Leu,et al. Heterogeneous Uptake of Gaseous N2O5by (NH4)2SO4, NH4HSO4, and H2SO4Aerosols , 2001 .
[164] B. Vogel,et al. The loss of NO2, HNO3, NO3/N2O5, and HO2/HOONO2 on soot aerosol: A chamber and modeling study , 2001 .
[165] R. Niessner,et al. Interaction of Ozone and Water Vapor with Spark Discharge Soot Aerosol Particles Coated with Benzo[a]pyrene: O3 and H2O Adsorption, Benzo[a]pyrene Degradation, and Atmospheric Implications , 2001 .
[166] T. Peter,et al. On the impact of heterogeneous chemistry on ozone in the tropopause region , 2001 .
[167] Scot T. Martin,et al. Phase Transitions of Aqueous Atmospheric Particles. , 2000, Chemical reviews.
[168] Y. Rudich,et al. Reactive uptake of ozone by proxies for organic aerosols: Surface versus bulk processes , 2000 .
[169] Y. F. Li,et al. Contaminants in the Canadian Arctic: 5 years of progress in understanding sources, occurrence and pathways. , 2000, The Science of the total environment.
[170] R. A. Cox,et al. Hydrolysis of N2O5 on submicron sulfuric acid aerosols , 2000 .
[171] Yutaka Kondo,et al. Photochemistry of HO x in the upper troposphere at northern midlatitudes , 2000 .
[172] V. Grassian,et al. Determining Accurate Kinetic Parameters of Potentially Important Heterogeneous Atmospheric Reactions on Solid Particle Surfaces with a Knudsen Cell Reactor , 2000 .
[173] B. Finlayson‐Pitts,et al. Chemistry of the Upper and Lower Atmosphere , 2000 .
[174] D. Jacob. Heterogeneous chemistry and tropospheric ozone , 2000 .
[175] P. Warneck. Chemistry of the natural atmosphere , 1999 .
[176] Bruce E. Anderson,et al. OH and HO2 chemistry in the North Atlantic free troposphere , 1999 .
[177] Stanley C. Solomon,et al. Stratospheric ozone depletion: A review of concepts and history , 1999 .
[178] J. Abbatt,et al. HOBr in Sulfuric Acid Solutions: Solubility and Reaction with HCl as a Function of Temperature and Concentration , 1999 .
[179] J. Hemminger,et al. Effect of Water on the HNO3 Pressure Dependence of the Reaction between Gas-Phase HNO3 and NaCl Surfaces , 1999 .
[180] A. Wahner,et al. Nitrate effect in the heterogeneous hydrolysis of dinitrogen pentoxide on aqueous aerosols , 1999 .
[181] A. Wahner,et al. Heterogeneous reaction of N2O5 on sodium nitrate aerosol , 1998 .
[182] M. Molina,et al. Mass Accommodation Coefficient of H2SO4 Vapor on Aqueous Sulfuric Acid Surfaces and Gaseous Diffusion Coefficient of H2SO4 in N2/H2O , 1998 .
[183] R. A. Cox,et al. Kinetics of the Heterogeneous Reaction of HNO3 with NaCl: Effect of Water Vapor , 1998 .
[184] P. Mirabel,et al. MULTIPHASE CHEMISTRY OF N2O5, CLNO2, AND BRNO2 , 1998 .
[185] G. C. G. Waschewsky,et al. Heterogeneous Interactions of HOBr, HNO3, O3, and NO2 with Deliquescent NaCl Aerosols at Room Temperature , 1998 .
[186] J. D. de Gouw,et al. Reactive uptake of ozone by liquid organic compounds , 1998 .
[187] Allen,et al. Direct observation of heterogeneous chemistry in the atmosphere , 1998, Science.
[188] C. Zetzsch,et al. Heterogeneous Interconversion Reactions of BrNO2, ClNO2, Br2, and Cl2 , 1998 .
[189] Christian George,et al. Uptake Rate Measurements of Methanesulfonic Acid and Glyoxal by Aqueous Droplets , 1998 .
[190] S. F. Rice,et al. Raman spectral study of solutions of N2O4 and N2O5 in nitric acid , 1997 .
[191] John B. Nowak,et al. Infrared spectroscopy of model tropospheric aerosols as a function of relative humidity: Observation of deliquescence and crystallization , 1997 .
[192] M. Rossi,et al. Paper I: Design and construction of a Knudsen-cell reactor for the study of heterogeneous reactions over the temperature range 130–750 K: Performances and limitations , 1997 .
[193] R. Timonen,et al. Morphology and Surface Areas of Thin Ice Films , 1997 .
[194] D. R. Hanson,et al. Detailed Study of HOCl + HCl → Cl2 + H2O in Sulfuric Acid , 1997 .
[195] A. R. Ravishankara,et al. Heterogeneous and Multiphase Chemistry in the Troposphere , 1997 .
[196] J. Nowak,et al. Heterogeneous Interactions of HBr and HOCl with Cold Sulfuric Acid Solutions: Implications for Arctic Boundary Layer Bromine Chemistry , 1997 .
[197] C. Zetzsch,et al. Production and decay of ClNO2 from the reaction of gaseous N2O5 with NaCl solution: Bulk and aerosol experiments , 1997 .
[198] D. Worsnop,et al. Heterogeneous uptake of ClONO2 and N2O5 by sulfuric acid solutions , 1997 .
[199] J. Abbatt,et al. Reaction Probabilities for N2O5 Hydrolysis on Sulfuric Acid and Ammonium Sulfate Aerosols at Room Temperature , 1997 .
[200] B. Finlayson‐Pitts,et al. KNUDSEN CELL STUDIES OF THE UPTAKE OF GASEOUS HNO3 AND OTHER OXIDES OF NITROGEN ON SOLID NACL : THE ROLE OF SURFACE-ADSORBED WATER , 1996 .
[201] R. Eckert,et al. Modeling Nitronium Ion Concentrations in HNO3—H2SO4—H2O Mixtures , 1996 .
[202] J. Abbatt,et al. Heterogeneous Interactions of OH and HO2 Radicals with Surfaces Characteristic of Atmospheric Particulate Matter , 1996 .
[203] Y. Yung,et al. Heterogeneous Reactions of HNO3(g) + NaCl(s) .fwdarw. HCl(g) + NaNO3(s) and N2O5(g) + NaCl(s) .fwdarw. ClNO2(g) + NaNO3(s) , 1995 .
[204] J. Ponche,et al. Fate of ClNO2 over aqueous solutions containing iodide , 1995 .
[205] Renyi Zhang,et al. Hydrolysis of N2O5 and CLONO2 on the H2SO4/HNO3/H2O Ternary , 1995 .
[206] J. Sodeau,et al. A LOW-TEMPERATURE REFLECTION-ABSORPTION INFRARED SPECTROSCOPIC STUDY OF ULTRATHIN FILMS OF DINITROGEN TETROXIDE AND DINITROGEN PENTOXIDE ON GOLD FOIL , 1995 .
[207] D. R. Hanson,et al. The Reaction of CIONO2 with Submicrometer Sulfuric Acid Aerosol , 1995, Science.
[208] Mark S. Zahniser,et al. Entry of gas molecules into liquids , 1995 .
[209] Yu. M. Gershenzon,et al. O3 and OH Sensitivity to heterogeneous sinks of HOx and CH3O2 on aerosol particles , 1995 .
[210] D. R. Hanson,et al. The uptake of N 2 O 5 onto small sulfuric acid particles , 1994 .
[211] M. Rossi,et al. Kinetics of Nitric Acid Uptake by Salt , 1994 .
[212] J. Ponche,et al. Study of the Uptake of N2O5 by Water and NaCl Solutions , 1994 .
[213] B. Finlayson‐Pitts,et al. X‐ray photoelectron spectroscopic studies of the heterogenous reaction of gaseous nitric acid with sodium chloride: Kinetics and contribution to the chemistry of the marine troposphere , 1994 .
[214] Gregory R. Carmichael,et al. Photochemical Oxidant Processes in the Presence of Dust: An Evaluation of the Impact of Dust on Particulate Nitrate and Ozone Formation , 1994 .
[215] D. R. Hanson,et al. Heterogeneous reactions in sulfuric acid aerosols: A framework for model calculations , 1994 .
[216] Alan Fried,et al. The reaction probability of N2O5 with sulfuric acid aerosols at stratospheric temperatures and compositions , 1994 .
[217] Paul J. Crutzen,et al. Reaction of N2O5 on tropospheric aerosols: Impact on the global distributions of NO x , O3, and OH , 1993 .
[218] A. Schumpe,et al. The estimation of gas solubilities in salt solutions , 1993 .
[219] G. Brasseur,et al. Impact of heterogeneous chemistry on model predictions of ozone changes , 1992 .
[220] M. Molina,et al. Heterogeneous interactions of nitryl hypochlorite and hydrogen chloride on nitric acid trihydrate at 202 K , 1992 .
[221] A. Ravishankara,et al. Measurement of the mass accommodation coefficient of ozone on aqueous surfaces , 1992 .
[222] D. R. Hanson,et al. Measurement of hydroxyl and hydroperoxy radical uptake coefficients on water and sulfuric acid surfaces , 1992 .
[223] M. Molina,et al. The heterogeneous reaction of HOCl + HCl ? Cl2 + H2O on ice and nitric acid trihydrate: Reaction pro , 1992 .
[224] D. R. Hanson,et al. Investigation of the reactive and nonreactive processes involving nitryl hypochlorite and hydrogen chloride on water and nitric acid doped ice , 1992 .
[225] R. Stolarski,et al. Heterogeneous conversion of N2O5 TO HNO3 on background stratospheric aerosols: Comparisons of model results with data , 1992 .
[226] D. Weisenstein,et al. Impact of heterogeneous chemistry on model‐calculated ozone change due to high speed civil transport aircraft , 1991 .
[227] D. R. Hanson,et al. The reaction probabilities of ClONO2 and N2O5 on 40 to 75% sulfuric acid solutions , 1991 .
[228] A. Boughriet,et al. Criteria of stability for dinitrogen pentoxide in organic media and anhydrous HNO3. Appraisal of the nitrating efficiency of some nitronium complexes in sulfolane , 1991 .
[229] M. Ko,et al. Role of heterogeneous conversion of N2O5 on sulphate aerosols in global ozone losses , 1991, Nature.
[230] D. R. Hanson,et al. The reaction probabilities of ClONO2 and N2O5 on polar stratospheric cloud materials , 1991 .
[231] M. Zahniser,et al. Uptake of dinitrogen pentoxide and nitric acid by aqueous sulfuric acid droplets , 1991 .
[232] S. B. Moore,et al. Surface reaction and pore diffusion in flow-tube reactors , 1991 .
[233] F. E. Livingston,et al. The reaction of gaseous N2O5 with solid NaCl at 298 K: Estimated lower limit to the reaction probability and its potential role in tropospheric and stratospheric chemistry , 1991 .
[234] Quinlan,et al. Heterogeneous reactions on model polar stratospheric cloud surfaces: reaction of dinitrogen pentoxide on ice and nitric acid trihydrate , 1990 .
[235] M. Zahniser,et al. Temperature dependence of the uptake coefficients of nitric acid, hydrochloric acid and nitrogen oxide (N2O5) by water droplets , 1990 .
[236] M. Rossi,et al. A pulsed halogen atom source for kinetic measurements in a Knudsen cell reactor , 1990 .
[237] B. Finlayson‐Pitts,et al. Formation of chemically active chlorine compounds by reactions of atmospheric NaCl particles with gaseous N2O5 and ClONO2 , 1989, Nature.
[238] M. Mozurkewich,et al. Reaction probability of N2O5 on aqueous aerosols , 1988 .
[239] M. Hoffmann,et al. Henry's law constants of some environmentally important aldehydes. , 1988, Environmental science & technology.
[240] M. Leu. Heterogeneous reactions of N2O5 with H2O and HCl on ice surfaces: Implications for Antarctic ozone depletion , 1988 .
[241] D. Golden,et al. Antarctic Ozone Depletion Chemistry: Reactions of N2O5 with H2O and HCl on Ice Surfaces , 1988, Science.
[242] M. Zahniser,et al. Measurement of the mass accommodation coefficient of SO2 (g) on water droplets , 1987 .
[243] P. Mcmurry,et al. Mass Accommodation Coefficient for HO 2 Radicals on Aqueous Particles , 1987 .
[244] D. Jacob. Chemistry of OH in remote clouds and its role in the production of formic acid and peroxymonosulfate , 1986 .
[245] A. Ross,et al. Reactivity of HO2/O−2 Radicals in Aqueous Solution , 1985 .
[246] R. Būhler,et al. Ozone decomposition in water studied by pulse radiolysis. 1. HO_2/O_2 and HO_3/O_3 as intermediates , 1984 .
[247] D. Jacob,et al. A dynamic model for the production of H+ NO3 −, and SO4 2− in urban fog , 1983 .
[248] K. Sehested,et al. Rate constants and products of the reactions of e-aq, dioxide(1-) (O2-) and proton with ozone in aqueous solutions , 1983 .
[249] Carleton J. Howard,et al. Kinetic measurements using flow tubes , 1979 .
[250] P. Crutzen. A Review of Upper Atmospheric Photochemistry , 1974 .
[251] H. Niki,et al. Reaction of dinitrogen pentoxide with water , 1973 .
[252] David M. Golden,et al. Very Low-Pressure Pyrolysis (VLPP); A Versatile Kinetic Tool , 1973 .
[253] J. Bricard,et al. Formation and evolution of nuclei of condensation that appear in air initially free of aerosols , 1968 .
[254] C. Junge,et al. Air chemistry and radioactivity , 1963 .