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512 peer-reviewed articles • 67,697 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Humid Summers Promote Urban Aqueous‐Phase Production of Oxygenated Organic Aerosol in the Northeastern United States2.918Citations (PDF)
2Dark brown carbon from biomass burning contributes to significant global-scale positive forcing
One Earth, 2025, 8, 101205
6.317Citations (PDF)
3Look Within: Intraplume Differences on Smoke Aerosol Aging Driven by Concentration Gradients2.12Citations (PDF)
4Global Model of Atmospheric Chlorate on Earth2.14Citations (PDF)
5Positive matrix factorization of large real-time atmospheric mass spectrometry datasets using error-weighted randomized hierarchical alternating least squares
Geoscientific Model Development, 2025, 18, 2891-2919
2.30Citations (PDF)
6Mitigation of Indoor Air Pollution from Air Cleaners Using a Catalyst
2025, 2, 1694-1703
3Citations (PDF)
7The Impact of UVC Light on Indoor Air Chemistry: A Modeling Study8.64Citations (PDF)
8High-resolution multi-pollutant mapping in Denver, Colorado
Atmospheric Environment: X, 2025, 27, 100364
0.80Citations (PDF)
9Evaluating the sensitivity of mortality attributable to pollution to modeling Choices: A case study for Colorado
Environment International, 2024, 185, 108416
6.76Citations (PDF)
10Parameterizations of US wildfire and prescribed fire emission ratios and emission factors based on FIREX-AQ aircraft measurements3.034Citations (PDF)
11Observationally constrained analysis of sulfur cycle in the marine atmosphere with NASA ATom measurements and AeroCom model simulations3.06Citations (PDF)
12Airborne Observations Constrain Heterogeneous Nitrogen and Halogen Chemistry on Tropospheric and Stratospheric Biomass Burning Aerosol2.96Citations (PDF)
13Quantitative Characterization of the Volatility Distribution of Organic Aerosols in a Polluted Urban Area: Intercomparison Between Thermodenuder and Molecular Measurements2.19Citations (PDF)
14A GPU-accelerated computational fluid dynamics solver for assessing shear-driven indoor airflow and virus transmission by scale-resolved simulations2.56Citations (PDF)
15Absorption of volatile organic compounds (VOCs) by polymer tubing: implications for indoor air and use as a simple gas-phase volatility separation technique1.913Citations (PDF)
16Effects of 222 nm Germicidal Ultraviolet Light on Aerosol and VOC Formation from Limonene
2024, 1, 725-733
18Citations (PDF)
17A multi-instrumental approach for calibrating real-time mass spectrometers using high-performance liquid chromatography and positive matrix factorization
2024, 2, 59-76
3Citations (PDF)
18Secondary Organic Aerosol Formation from the OH Oxidation of Phenol, Catechol, Styrene, Furfural, and Methyl Furfural
ACS Earth and Space Chemistry, 2024, 8, 1179-1192
1.97Citations (PDF)
19A comprehensive evaluation of enhanced temperature influence on gas and aerosol chemistry in the lamp-enclosed oxidation flow reactor (OFR) system1.96Citations (PDF)
20Using observed urban NO x sinks to constrain VOC reactivity and the ozone and radical budget in the Seoul Metropolitan Area3.04Citations (PDF)
21Occurrence, abundance, and formation of atmospheric tarballs from a wide range of wildfires in the western US
Atmospheric Chemistry and Physics, 2024, 24, 10985-11004
3.010Citations (PDF)
22Emissions and Chemistry of Volatile Organic Compounds in the Los Angeles Basin in Summer 20222.16Citations (PDF)
23Model Evaluation of Secondary Chemistry due to Disinfection of Indoor Air with Germicidal Ultraviolet Lamps4.956Citations (PDF)
24Fire Influence on Regional to Global Environments and Air Quality (FIREX‐AQ)2.1102Citations (PDF)
25Nitrogen oxides in the free troposphere: implications for tropospheric oxidants and the interpretation of satellite NO 2 measurements3.074Citations (PDF)
26Chemical Signatures of Seasonally Unique Anthropogenic Influences on Organic Aerosol Composition in the Central Amazon8.610Citations (PDF)
27A Scheme for Representing Aromatic Secondary Organic Aerosols in Chemical Transport Models: Application to Source Attribution of Organic Aerosols Over South Korea During the KORUS‐AQ Campaign2.18Citations (PDF)
28Measurement report: Emission factors of NH 3 and NH x for wildfires and agricultural fires in the United States3.017Citations (PDF)
29Pyrocumulonimbus affect average stratospheric aerosol composition
Science, 2023, 379, 815-820
26.544Citations (PDF)
30Investigation of Gas-Phase Products from the NO3 Radical Oxidation of Δ-3-Carene
ACS Earth and Space Chemistry, 2023, 7, 1097-1106
1.96Citations (PDF)
31Stratospheric Gas‐Phase Production Alone Cannot Explain Observations of Atmospheric Perchlorate on Earth2.98Citations (PDF)
32Parameterization of size of organic and secondary inorganic aerosol for efficient representation of global aerosol optical properties3.09Citations (PDF)
33Overview of ICARUS─A Curated, Open Access, Online Repository for Atmospheric Simulation Chamber Data
ACS Earth and Space Chemistry, 2023, 7, 1235-1246
1.94Citations (PDF)
34Evolution of organic carbon in the laboratory oxidation of biomass-burning emissions3.06Citations (PDF)
35Significant Production of Ozone from Germicidal UV Lights at 222 nm4.950Citations (PDF)
36Emission Factors for Crop Residue and Prescribed Fires in the Eastern US During FIREX‐AQ2.120Citations (PDF)
37Global Health and Climate Effects of Organic Aerosols from Different Sources8.626Citations (PDF)
38Impact of Biomass Burning Organic Aerosol Volatility on Smoke Concentrations Downwind of Fires8.634Citations (PDF)
39Probing Atmospheric Aerosols by Multimodal Mass Spectrometry Techniques: Revealing Aging Characteristics of Its Individual Molecular Components
ACS Earth and Space Chemistry, 2023, 7, 2498-2510
1.94Citations (PDF)
40A searchable database and mass spectral comparison tool for the Aerosol Mass Spectrometer (AMS) and the Aerosol Chemical Speciation Monitor (ACSM)1.910Citations (PDF)
41Probing Atmospheric Aerosols by Multimodal Mass Spectrometry Techniques: Revealing Aging Characteristics of Its Individual Molecular Components
ACS Earth and Space Chemistry, 2023, 7, 2498-2510
1.911Citations (PDF)
42How can ventilation be improved on public transportation buses? Insights from CO2 measurements
Environmental Research, 2022, 205, 112451
5.736Citations (PDF)
43Fine Ash‐Bearing Particles as a Major Aerosol Component in Biomass Burning Smoke2.134Citations (PDF)
44A systematic re-evaluation of methods for quantification of bulk particle-phase organic nitrates using real-time aerosol mass spectrometry1.951Citations (PDF)
45Field observational constraints on the controllers in glyoxal (CHOCHO) reactive uptake to aerosol3.017Citations (PDF)
46Evaluation of Secondary Organic Aerosol (SOA) Simulations for Seoul, Korea2.623Citations (PDF)
47Practical Indicators for Risk of Airborne Transmission in Shared Indoor Environments and Their Application to COVID-19 Outbreaks8.6195Citations (PDF)
48Exploring dimethyl sulfide (DMS) oxidation and implications for global aerosol radiative forcing3.090Citations (PDF)
49Teaching Instrumental Analysis during the Pandemic: Application of Handheld CO2 Monitors to Explore COVID-19 Transmission Risks
Journal of Chemical Education, 2022, 99, 1794-1801
1.78Citations (PDF)
50Identifying chemical aerosol signatures using optical suborbital observations: how much can optical properties tell us about aerosol composition?3.09Citations (PDF)
51Photochemical evolution of the 2013 California Rim Fire: synergistic impacts of reactive hydrocarbons and enhanced oxidants3.018Citations (PDF)
52Oxidation Flow Reactor Results in a Chinese Megacity Emphasize the Important Contribution of S/IVOCs to Ambient SOA Formation8.659Citations (PDF)
53Airborne Emission Rate Measurements Validate Remote Sensing Observations and Emission Inventories of Western U.S. Wildfires8.642Citations (PDF)
54Evaluating the Impact of Chemical Complexity and Horizontal Resolution on Tropospheric Ozone Over the Conterminous US With a Global Variable Resolution Chemistry Model2.648Citations (PDF)
55Limitations in representation of physical processes prevent successful simulation of PM 2.5 during KORUS-AQ3.042Citations (PDF)
56Characteristics and evolution of brown carbon in western United States wildfires3.053Citations (PDF)
57Simulating wildfire emissions and plume rise using geostationary satellite fire radiative power measurements: a case study of the 2019 Williams Flats fire
Atmospheric Chemistry and Physics, 2022, 22, 10195-10219
3.011Citations (PDF)
58What were the historical reasons for the resistance to recognizing airborne transmission during the COVID ‐19 pandemic?
Indoor Air, 2022, 32,
1.699Citations (PDF)
59Comparison of airborne measurements of NO, NO 2 , HONO, NO y , and CO during FIREX-AQ1.935Citations (PDF)
60Understanding the Evolution of Smoke Mass Extinction Efficiency Using Field Campaign Measurements2.917Citations (PDF)
61Secondary Organic Aerosol Mass Yields from NO3 Oxidation of α-Pinene and Δ-Carene: Effect of RO2 Radical Fate
Journal of Physical Chemistry A, 2022, 126, 7309-7330
1.935Citations (PDF)
62Aerosol size distribution changes in FIREX-AQ biomass burning plumes: the impact of plume concentration on coagulation and OA condensation/evaporation
Atmospheric Chemistry and Physics, 2022, 22, 12803-12825
3.027Citations (PDF)
63Reactive Chlorine Emissions from Cleaning and Reactive Nitrogen Chemistry in an Indoor Athletic Facility8.621Citations (PDF)
64A multinational Delphi consensus to end the COVID-19 public health threat
Nature, 2022, 611, 332-345
31.3185Citations (PDF)
65Evaluation of the NAQFC driven by the NOAA Global Forecast System (version 16): comparison with the WRF-CMAQ during the summer 2019 FIREX-AQ campaign
Geoscientific Model Development, 2022, 15, 7977-7999
2.36Citations (PDF)
66Emission factors and evolution of SO 2 measured from biomass burning in wildfires and agricultural fires
Atmospheric Chemistry and Physics, 2022, 22, 15603-15620
3.039Citations (PDF)
67Quantification and source characterization of volatile organic compounds from exercising and application of chlorine‐based cleaning products in a university athletic center
Indoor Air, 2021, 31, 1323-1339
1.662Citations (PDF)
68Real‐time organic aerosol chemical speciation in the indoor environment using extractive electrospray ionization mass spectrometry
Indoor Air, 2021, 31, 141-155
1.648Citations (PDF)
69An in situ gas chromatograph with automatic detector switching between PTR- and EI-TOF-MS: isomer-resolved measurements of indoor air1.975Citations (PDF)
70Airborne extractive electrospray mass spectrometry measurements of the chemical composition of organic aerosol1.932Citations (PDF)
71Future changes in isoprene-epoxydiol-derived secondary organic aerosol (IEPOX SOA) under the Shared Socioeconomic Pathways: the importance of physicochemical dependency3.031Citations (PDF)
72Aerosol pH indicator and organosulfate detectability from aerosol mass spectrometry measurements1.925Citations (PDF)
73Dismantling myths on the airborne transmission of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2)1.7340Citations (PDF)
74Exhaled CO 2 as a COVID-19 Infection Risk Proxy for Different Indoor Environments and Activities4.9291Citations (PDF)
75HCOOH in the Remote Atmosphere: Constraints from Atmospheric Tomography (ATom) Airborne Observations
ACS Earth and Space Chemistry, 2021, 5, 1436-1454
1.920Citations (PDF)
76The importance of size ranges in aerosol instrument intercomparisons: a case study for the Atmospheric Tomography Mission1.950Citations (PDF)
77Chemical transport models often underestimate inorganic aerosol acidity in remote regions of the atmosphere4.957Citations (PDF)
78Sizing response of the Ultra-High Sensitivity Aerosol Spectrometer (UHSAS) and Laser Aerosol Spectrometer (LAS) to changes in submicron aerosol composition and refractive index1.963Citations (PDF)
79Quantification of cooking organic aerosol in the indoor environment using aerodyne aerosol mass spectrometers
Aerosol Science and Technology, 2021, 55, 1099-1114
1.530Citations (PDF)
80Large Emissions of Low-Volatility Siloxanes during Residential Oven Use4.926Citations (PDF)
81Quantifying Atmospheric Parameter Ranges for Ambient Secondary Organic Aerosol Formation
ACS Earth and Space Chemistry, 2021, 5, 2380-2397
1.935Citations (PDF)
82Impact of stratospheric air and surface emissions on tropospheric nitrous oxide during ATom
Atmospheric Chemistry and Physics, 2021, 21, 11113-11132
3.011Citations (PDF)
83Relative Humidity Predicts Day-to-Day Variations in COVID-19 Cases in the City of Buenos Aires8.611Citations (PDF)
84Secondary organic aerosols from anthropogenic volatile organic compounds contribute substantially to air pollution mortality
Atmospheric Chemistry and Physics, 2021, 21, 11201-11224
3.0130Citations (PDF)
85Airborne transmission of respiratory viruses
Science, 2021, 373,
26.51,434Citations (PDF)
86Sources of Gas-Phase Species in an Art Museum from Comprehensive Real-Time Measurements
ACS Earth and Space Chemistry, 2021, 5, 2252-2267
1.918Citations (PDF)
87Halogens Enhance Haze Pollution in China8.658Citations (PDF)
88Transmission of SARS‐CoV‐2 by inhalation of respiratory aerosol in the Skagit Valley Chorale superspreading event
Indoor Air, 2021, 31, 314-323
1.6653Citations (PDF)
89Ambient aerosol properties in the remote atmosphere from global-scale in situ measurements
Atmospheric Chemistry and Physics, 2021, 21, 15023-15063
3.036Citations (PDF)
90How did we get here: what are droplets and aerosols and how far do they go? A historical perspective on the transmission of respiratory infectious diseases
Interface Focus, 2021, 11,
2.1142Citations (PDF)
91Evolution of OH reactivity in NO-free volatile organic compound photooxidation investigated by the fully explicit GECKO-A model
Atmospheric Chemistry and Physics, 2021, 21, 14649-14669
3.012Citations (PDF)
92Determining Activity Coefficients of SOA from Isothermal Evaporation in a Laboratory Chamber4.915Citations (PDF)
93Machine Learning Uncovers Aerosol Size Information From Chemistry and Meteorology to Quantify Potential Cloud‐Forming Particles2.925Citations (PDF)
94Novel Analysis to Quantify Plume Crosswind Heterogeneity Applied to Biomass Burning Smoke8.624Citations (PDF)
95Relating geostationary satellite measurements of aerosol optical depth (AOD) over East Asia to fine particulate matter (PM 2.5 ): insights from the KORUS-AQ aircraft campaign and GEOS-Chem model simulations
Atmospheric Chemistry and Physics, 2021, 21, 16775-16791
3.055Citations (PDF)
96Ozone chemistry in western U.S. wildfire plumes
Science Advances, 2021, 7,
8.2130Citations (PDF)
97Large contribution of biomass burning emissions to ozone throughout the global remote troposphere5.3102Citations (PDF)
98Reconciling Assumptions in Bottom‐Up and Top‐Down Approaches for Estimating Aerosol Emission Rates From Wildland Fires Using Observations From FIREX‐AQ2.123Citations (PDF)
99Contribution of Organic Nitrates to Organic Aerosol over South Korea during KORUS-AQ8.622Citations (PDF)
100Contrasting Reactive Organic Carbon Observations in the Southeast United States (SOAS) and Southern California (CalNex)8.627Citations (PDF)
101Development and application of a low-cost vaporizer for rapid, quantitative, in situ addition of organic gases and particles to an environmental chamber
Aerosol Science and Technology, 2020, 54, 1567-1578
1.510Citations (PDF)
102Always Lost but Never Forgotten: Gas-Phase Wall Losses Are Important in All Teflon Environmental Chambers8.643Citations (PDF)
103Indoor Surface Chemistry: Developing a Molecular Picture of Reactions on Indoor Interfaces
CheM, 2020, 6, 3203-3218
12.5116Citations (PDF)
104Putting a balance on the aerosolization debate around SARS-CoV-2
Journal of Hospital Infection, 2020, 105, 569-570
1.738Citations (PDF)
105Nitrate radical generation via continuous generation of dinitrogen pentoxide in a laminar flow reactor coupled to an oxidation flow reactor1.919Citations (PDF)
106How emissions uncertainty influences the distribution and radiative impacts of smoke from fires in North America3.0104Citations (PDF)
107Characterization of organic aerosol across the global remote troposphere: a comparison of ATom measurements and global chemistry models3.085Citations (PDF)
108Exploration of oxidative chemistry and secondary organic aerosol formation in the Amazon during the wet season: explicit modeling of the Manaus urban plume with GECKO-A3.012Citations (PDF)
109Understanding and improving model representation of aerosol optical properties for a Chinese haze event measured during KORUS-AQ3.025Citations (PDF)
110Estimates of Regional Source Contributions to the Asian Tropopause Aerosol Layer Using a Chemical Transport Model2.126Citations (PDF)
111Ambient Quantification and Size Distributions for Organic Aerosol in Aerosol Mass Spectrometers with the New Capture Vaporizer1.912Citations (PDF)
112Measurements and modeling of absorptive partitioning of volatile organic compounds to painted surfaces
Indoor Air, 2020, 30, 745-756
1.644Citations (PDF)
113Resolving Ambient Organic Aerosol Formation and Aging Pathways with Simultaneous Molecular Composition and Volatility Observations1.927Citations (PDF)
114Quantitative detection of iodine in the stratosphere5.399Citations (PDF)
115Natural and Anthropogenically Influenced Isoprene Oxidation in Southeastern United States and Central Amazon8.641Citations (PDF)
116Radical chemistry in oxidation flow reactors for atmospheric chemistry research
Chemical Society Reviews, 2020, 49, 2570-2616
32.6133Citations (PDF)
117Global airborne sampling reveals a previously unobserved dimethyl sulfide oxidation mechanism in the marine atmosphere5.3196Citations (PDF)
118Investigation of factors controlling PM2.5 variability across the South Korean Peninsula during KORUS-AQ
Elementa, 2020, 8,
1.967Citations (PDF)
119Long-term observational constraints of organic aerosol dependence on inorganic species in the southeast US
Atmospheric Chemistry and Physics, 2020, 20, 13091-13107
3.022Citations (PDF)
120An evaluation of global organic aerosol schemes using airborne observations3.0148Citations (PDF)
121Predictions of the glass transition temperature and viscosity of organic aerosols from volatility distributions3.099Citations (PDF)
122Interferences with aerosol acidity quantification due to gas-phase ammonia uptake onto acidic sulfate filter samples1.911Citations (PDF)
123New SOA Treatments Within the Energy Exascale Earth System Model (E3SM): Strong Production and Sinks Govern Atmospheric SOA Distributions and Radiative Forcing2.634Citations (PDF)
124Aging Effects on Biomass Burning Aerosol Mass and Composition: A Critical Review of Field and Laboratory Studies8.6206Citations (PDF)
125Aerosol size distributions during the Atmospheric Tomography Mission (ATom): methods, uncertainties, and data products1.985Citations (PDF)
126Effects of gas–wall interactions on measurements of semivolatile compounds and small polar molecules1.962Citations (PDF)
127Measurements of delays of gas-phase compounds in a wide variety of tubing materials due to gas–wall interactions1.991Citations (PDF)
128Overview of HOMEChem: House Observations of Microbial and Environmental Chemistry2.4185Citations (PDF)
129Contributions of biomass-burning, urban, and biogenic emissions to the concentrations and light-absorbing properties of particulate matter in central Amazonia during the dry season3.051Citations (PDF)
130A simplified parameterization of isoprene-epoxydiol-derived secondary organic aerosol (IEPOX-SOA) for global chemistry and climate models: a case study with GEOS-Chem v11-02-rc
Geoscientific Model Development, 2019, 12, 2983-3000
2.328Citations (PDF)
131Observational Constraints on the Formation of Cl2 From the Reactive Uptake of ClNO2 on Aerosols in the Polluted Marine Boundary Layer2.132Citations (PDF)
132Comparison of Airborne Reactive Nitrogen Measurements During WINTER2.19Citations (PDF)
133A large source of cloud condensation nuclei from new particle formation in the tropics
Nature, 2019, 574, 399-403
31.3212Citations (PDF)
134Budgets of Organic Carbon Composition and Oxidation in Indoor Air8.653Citations (PDF)
135Biomass Burning Markers and Residential Burning in the WINTER Aircraft Campaign2.147Citations (PDF)
136Direct measurements of semi-volatile organic compound dynamics show near-unity mass accommodation coefficients for diverse aerosols4.258Citations (PDF)
137Autoxidation of Limonene Emitted in a University Art Museum4.932Citations (PDF)
138Biogenic emissions and land–atmosphere interactions as drivers of the daytime evolution of secondary organic aerosol in the southeastern US3.015Citations (PDF)
139Organic peroxy radical chemistry in oxidation flow reactors and environmental chambers and their atmospheric relevance3.059Citations (PDF)
140Rates of Wintertime Atmospheric SO2 Oxidation based on Aircraft Observations during Clear‐Sky Conditions over the Eastern United States2.120Citations (PDF)
141Towards a satellite formaldehyde – in situ hybrid estimate for organic aerosol abundance3.016Citations (PDF)
142Increasing Isoprene Epoxydiol-to-Inorganic Sulfate Aerosol Ratio Results in Extensive Conversion of Inorganic Sulfate to Organosulfur Forms: Implications for Aerosol Physicochemical Properties8.6171Citations (PDF)
143Simulating secondary organic aerosol in a regional air quality model using the statistical oxidation model – Part 3: Assessing the influence of semi-volatile and intermediate-volatility organic compounds and NO x 3.038Citations (PDF)
144The potential role of methanesulfonic acid (MSA) in aerosol formation and growth and the associated radiative forcings3.0124Citations (PDF)
145Time-Resolved Measurements of Indoor Chemical Emissions, Deposition, and Reactions in a University Art Museum8.6123Citations (PDF)
146Atmospheric Acetaldehyde: Importance of Air‐Sea Exchange and a Missing Source in the Remote Troposphere
Geophysical Research Letters, 2019, 46, 5601-5613
2.965Citations (PDF)
147Viscosities, diffusion coefficients, and mixing times of intrinsic fluorescent organic molecules in brown limonene secondary organic aerosol and tests of the Stokes–Einstein equation3.030Citations (PDF)
148HO x and NO x production in oxidation flow reactors via photolysis of isopropyl nitrite, isopropyl nitrite-d 7 , and 1,3-propyl dinitrite at λ  = 254, 350, and 369 nm1.921Citations (PDF)
149Importance of biogenic volatile organic compounds to acyl peroxy nitrates (APN) production in the southeastern US during SOAS 20133.014Citations (PDF)
150Response of the Aerodyne Aerosol Mass Spectrometer to Inorganic Sulfates and Organosulfur Compounds: Applications in Field and Laboratory Measurements8.667Citations (PDF)
151EURODELTA III exercise: An evaluation of air quality models’ capacity to reproduce the carbonaceous aerosol0.812Citations (PDF)
152Widespread Pollution From Secondary Sources of Organic Aerosols During Winter in the Northeastern United States
Geophysical Research Letters, 2019, 46, 2974-2983
2.935Citations (PDF)
153OH chemistry of non-methane organic gases (NMOGs) emitted from laboratory and ambient biomass burning smoke: evaluating the influence of furans and oxygenated aromatics on ozone and secondary NMOG formation
Atmospheric Chemistry and Physics, 2019, 19, 14875-14899
3.0120Citations (PDF)
154Climate Forcing and Trends of Organic Aerosols in the Community Earth System Model (CESM2)2.6152Citations (PDF)
155Integration of airborne and ground observations of nitryl chloride in the Seoul metropolitan area and the implications on regional oxidation capacity during KORUS-AQ 2016
Atmospheric Chemistry and Physics, 2019, 19, 12779-12795
3.036Citations (PDF)
156Performance of a new coaxial ion–molecule reaction region for low-pressure chemical ionization mass spectrometry with reduced instrument wall interactions1.927Citations (PDF)
157A new method to quantify mineral dust and other aerosol species from aircraft platforms using single-particle mass spectrometry1.986Citations (PDF)
158Anthropogenic Control Over Wintertime Oxidation of Atmospheric Pollutants
Geophysical Research Letters, 2019, 46, 14826-14835
2.940Citations (PDF)
159Laser Ablation-Aerosol Mass Spectrometry-Chemical Ionization Mass Spectrometry for Ambient Surface Imaging
Analytical Chemistry, 2018, 90, 4046-4053
5.39Citations (PDF)
160Evaluation of the New Capture Vaporizer for Aerosol Mass Spectrometers (AMS): Elemental Composition and Source Apportionment of Organic Aerosols (OA)1.939Citations (PDF)
161Secondary organic aerosol formation from ambient air in an oxidation flow reactor in central Amazonia3.083Citations (PDF)
162Heterogeneous N2O5 Uptake During Winter: Aircraft Measurements During the 2015 WINTER Campaign and Critical Evaluation of Current Parameterizations2.1141Citations (PDF)
163Monoterpenes are the largest source of summertime organic aerosol in the southeastern United States5.3260Citations (PDF)
164Volatile chemical products emerging as largest petrochemical source of urban organic emissions
Science, 2018, 359, 760-764
26.51,131Citations (PDF)
165Laboratory evaluation of species-dependent relative ionization efficiencies in the Aerodyne Aerosol Mass Spectrometer1.569Citations (PDF)
166Model Evaluation of New Techniques for Maintaining High-NO Conditions in Oxidation Flow Reactors for the Study of OH-Initiated Atmospheric Chemistry1.941Citations (PDF)
167Synthesis of the Southeast Atmosphere Studies: Investigating Fundamental Atmospheric Chemistry Questions0.274Citations (PDF)
168Southeast Atmosphere Studies: learning from model-observation syntheses3.040Citations (PDF)
169Exploring the observational constraints on the simulation of brown carbon3.0189Citations (PDF)
170Non-methane organic gas emissions from biomass burning: identification, quantification, and emission factors from PTR-ToF during the FIREX 2016 laboratory experiment3.0336Citations (PDF)
171Evaluation of the new capture vaporizer for aerosol mass spectrometers: Characterization of organic aerosol mass spectra1.541Citations (PDF)
172Organosulfates in aerosols downwind of an urban region in central Amazon2.453Citations (PDF)
173Secondary organic aerosol production from local emissions dominates the organic aerosol budget over Seoul, South Korea, during KORUS-AQ
Atmospheric Chemistry and Physics, 2018, 18, 17769-17800
3.0146Citations (PDF)
174Is there an aerosol signature of chemical cloud processing?
Atmospheric Chemistry and Physics, 2018, 18, 16099-16119
3.043Citations (PDF)
175ClNO2 Yields From Aircraft Measurements During the 2015 WINTER Campaign and Critical Evaluation of the Current Parameterization2.139Citations (PDF)
176Constraining nucleation, condensation, and chemistry in oxidation flow reactors using size-distribution measurements and aerosol microphysical modeling
Atmospheric Chemistry and Physics, 2018, 18, 12433-12460
3.014Citations (PDF)
177An omnipresent diversity and variability in the chemical composition of atmospheric functionalized organic aerosol4.240Citations (PDF)
178Nitrogen Oxides Emissions, Chemistry, Deposition, and Export Over the Northeast United States During the WINTER Aircraft Campaign2.167Citations (PDF)
179Functional Group Composition of Secondary Organic Aerosol Formed from Ozonolysis of α-Pinene Under High VOC and Autoxidation Conditions
ACS Earth and Space Chemistry, 2018, 2, 1196-1210
1.983Citations (PDF)
180Wintertime Gas‐Particle Partitioning and Speciation of Inorganic Chlorine in the Lower Troposphere Over the Northeast United States and Coastal Ocean2.136Citations (PDF)
181Airborne Observations of Reactive Inorganic Chlorine and Bromine Species in the Exhaust of Coal‐Fired Power Plants2.146Citations (PDF)
182Observations of sesquiterpenes and their oxidation products in central Amazonia during the wet and dry seasons
Atmospheric Chemistry and Physics, 2018, 18, 10433-10457
3.075Citations (PDF)
183Photochemical model evaluation of 2013 California wild fire air quality impacts using surface, aircraft, and satellite data
Science of the Total Environment, 2018, 637-638, 1137-1149
5.659Citations (PDF)
184Chemical feedbacks weaken the wintertime response of particulate sulfate and nitrate to emissions reductions over the eastern United States5.3176Citations (PDF)
185Characterization of the Real Part of Dry Aerosol Refractive Index Over North America From the Surface to 12 km2.135Citations (PDF)
186Flight Deployment of a High‐Resolution Time‐of‐Flight Chemical Ionization Mass Spectrometer: Observations of Reactive Halogen and Nitrogen Oxide Species2.153Citations (PDF)
187Ambient Measurements of Highly Oxidized Gas-Phase Molecules during the Southern Oxidant and Aerosol Study (SOAS) 20131.974Citations (PDF)
188Secondary organic aerosol (SOA) yields from NO 3 radical + isoprene based on nighttime aircraft power plant plume transects
Atmospheric Chemistry and Physics, 2018, 18, 11663-11682
3.067Citations (PDF)
189Sources and Secondary Production of Organic Aerosols in the Northeastern United States during WINTER2.187Citations (PDF)
190Urban influence on the concentration and composition of submicron particulate matter in central Amazonia
Atmospheric Chemistry and Physics, 2018, 18, 12185-12206
3.037Citations (PDF)
191Observations of Manaus urban plume evolution and interaction with biogenic emissions in GoAmazon 2014/5
Atmospheric Environment, 2018, 191, 513-524
2.821Citations (PDF)
192NOx Lifetime and NOy Partitioning During WINTER2.174Citations (PDF)
193Evaluation of the new capture vaporizer for aerosol mass spectrometers (AMS) through field studies of inorganic species1.579Citations (PDF)
194Gas-Phase Carboxylic Acids in a University Classroom: Abundance, Variability, and Sources8.671Citations (PDF)
195Contrasting aerosol refractive index and hygroscopicity in the inflow and outflow of deep convective storms: Analysis of airborne data from DC32.111Citations (PDF)
196The Global Aerosol Synthesis and Science Project (GASSP): Measurements and Modeling to Reduce Uncertainty0.270Citations (PDF)
197Microphysical explanation of the RH‐dependent water affinity of biogenic organic aerosol and its importance for climate
Geophysical Research Letters, 2017, 44, 5167-5177
2.993Citations (PDF)
198Field intercomparison of the gas/particle partitioning of oxygenated organics during the Southern Oxidant and Aerosol Study (SOAS) in 20131.547Citations (PDF)
199Top-of-atmosphere radiative forcing affected by brown carbon in the upper troposphere
Nature Geoscience, 2017, 10, 486-489
10.2256Citations (PDF)
200The optical and chemical properties of discharge generated organic haze using in-situ real-time techniques
Icarus, 2017, 294, 1-13
2.215Citations (PDF)
201Airborne measurements of western U.S. wildfire emissions: Comparison with prescribed burning and air quality implications2.1245Citations (PDF)
202Review of Urban Secondary Organic Aerosol Formation from Gasoline and Diesel Motor Vehicle Emissions8.6459Citations (PDF)
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204Direct Measurements of Gas/Particle Partitioning and Mass Accommodation Coefficients in Environmental Chambers8.652Citations (PDF)
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206Impact of Thermal Decomposition on Thermal Desorption Instruments: Advantage of Thermogram Analysis for Quantifying Volatility Distributions of Organic Species8.6148Citations (PDF)
207Mixing times of organic molecules within secondary organic aerosol particles: a global planetary boundary layer perspective
Atmospheric Chemistry and Physics, 2017, 17, 13037-13048
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208On the implications of aerosol liquid water and phase separation for organic aerosol mass3.0248Citations (PDF)
209Influence of urban pollution on the production of organic particulate matter from isoprene epoxydiols in central Amazonia3.051Citations (PDF)
210Anthropogenic influences on the physical state of submicron particulate matter over a tropical forest3.061Citations (PDF)
211Nitrate radicals and biogenic volatile organic compounds: oxidation, mechanisms, and organic aerosol3.0458Citations (PDF)
212Semivolatile POA and parameterized total combustion SOA in CMAQv5.2: impacts on source strength and partitioning
Atmospheric Chemistry and Physics, 2017, 17, 11107-11133
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213CCN activity and organic hygroscopicity of aerosols downwind of an urban region in central Amazonia: seasonal and diel variations and impact of anthropogenic emissions
Atmospheric Chemistry and Physics, 2017, 17, 11779-11801
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214Modeling of the chemistry in oxidation flow reactors with high initial NO
Atmospheric Chemistry and Physics, 2017, 17, 11991-12010
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215Inconsistency of ammonium–sulfate aerosol ratios with thermodynamic models in the eastern US: a possible role of organic aerosol3.068Citations (PDF)
216Secondary organic aerosol formation from in situ OH, O<sub>3</sub>, and NO<sub>3</sub> oxidation of ambient forest air in an oxidation flow reactor3.078Citations (PDF)
217Fine particle pH and gas–particle phase partitioning of inorganic species in Pasadena, California, during the 2010 CalNex campaign3.0223Citations (PDF)
218Evaluating the impact of new observational constraints on P-S/IVOC emissions, multi-generation oxidation, and chamber wall losses on SOA modeling for Los Angeles, CA3.050Citations (PDF)
219Evaluation of the new capture vapourizer for aerosol mass spectrometers (AMS) through laboratory studies of inorganic species1.959Citations (PDF)
220Effects of gas–wall partitioning in Teflon tubing and instrumentation on time-resolved measurements of gas-phase organic compounds1.9126Citations (PDF)
221Comprehensive characterization of atmospheric organic carbon at a forested site
Nature Geoscience, 2017, 10, 748-753
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222Recent advances in understanding secondary organic aerosol: Implications for global climate forcing
Reviews of Geophysics, 2017, 55, 509-559
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223Organic and inorganic decomposition products from the thermal desorption of atmospheric particles1.915Citations (PDF)
224A technique for rapid source apportionment applied to ambient organic aerosol measurements from a thermal desorption aerosol gas chromatograph (TAG)1.912Citations (PDF)
225Ion mobility spectrometry–mass spectrometry (IMS–MS) for on- and offline analysis of atmospheric gas and aerosol species1.979Citations (PDF)
226Concluding remarks: Faraday Discussion on chemistry in the urban atmosphere
Faraday Discussions, 2016, 189, 661-667
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227Contribution of human-related sources to indoor volatile organic compounds in a university classroom
Indoor Air, 2016, 26, 925-938
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228Follow the Carbon: Isotopic Labeling Studies of Early Earth Aerosol
Astrobiology, 2016, 16, 822-830
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229Fine particle pH and the partitioning of nitric acid during winter in the northeastern United States2.1250Citations (PDF)
230Quantification of Gas-Wall Partitioning in Teflon Environmental Chambers Using Rapid Bursts of Low-Volatility Oxidized Species Generated in Situ8.6218Citations (PDF)
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232Ambient Gas-Particle Partitioning of Tracers for Biogenic Oxidation8.684Citations (PDF)
233Ambient observations of hygroscopic growth factor and f(RH) below 1: Case studies from surface and airborne measurements2.135Citations (PDF)
234Inorganic Salt Interference on CO2+ in Aerodyne AMS and ACSM Organic Aerosol Composition Studies8.6101Citations (PDF)
235Ubiquity of organic nitrates from nighttime chemistry in the European submicron aerosol
Geophysical Research Letters, 2016, 43, 7735-7744
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236Chemical composition, sources, and aging process of submicron aerosols in Beijing: Contrast between summer and winter2.1327Citations (PDF)
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238Simulating secondary organic aerosol in a regional air quality model using the statistical oxidation model – Part 2: Assessing the influence of vapor wall losses3.066Citations (PDF)
239Aerosol optical properties in the southeastern United States in summer – Part 1: Hygroscopic growth3.0102Citations (PDF)
240Evaluation of European air quality modelled by CAMx including the volatility basis set scheme
Atmospheric Chemistry and Physics, 2016, 16, 10313-10332
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241Phase state of ambient aerosol linked with water uptake and chemical aging in the southeastern US
Atmospheric Chemistry and Physics, 2016, 16, 11163-11176
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242Volatility and lifetime against OH heterogeneous reaction of ambient isoprene-epoxydiols-derived secondary organic aerosol (IEPOX-SOA)
Atmospheric Chemistry and Physics, 2016, 16, 11563-11580
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243Speciated measurements of semivolatile and intermediate volatility organic compounds (S/IVOCs) in a pine forest during BEACHON-RoMBAS 20113.034Citations (PDF)
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245Aqueous-phase mechanism for secondary organic aerosol formation from isoprene: application to the southeast United States and co-benefit of SO 2 emission controls3.0298Citations (PDF)
246Understanding sources of organic aerosol during CalNex-2010 using the CMAQ-VBS3.0111Citations (PDF)
247Non-OH chemistry in oxidation flow reactors for the study of atmospheric chemistry systematically examined by modeling3.0145Citations (PDF)
248Aerosol optical properties in the southeastern United States in summer – Part 2: Sensitivity of aerosol optical depth to relative humidity and aerosol parameters3.049Citations (PDF)
249Organic nitrate chemistry and its implications for nitrogen budgets in an isoprene- and monoterpene-rich atmosphere: constraints from aircraft (SEAC 4 RS) and ground-based (SOAS) observations in the Southeast US3.0223Citations (PDF)
250Aircraft-measured indirect cloud effects from biomass burning smoke in the Arctic and subarctic3.034Citations (PDF)
251Real-time measurements of secondary organic aerosol formation and aging from ambient air in an oxidation flow reactor in the Los Angeles area3.0169Citations (PDF)
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254Agricultural fires in the southeastern U.S. during SEAC4RS: Emissions of trace gases and particles and evolution of ozone, reactive nitrogen, and organic aerosol2.1117Citations (PDF)
255Liquid Water: Ubiquitous Contributor to Aerosol Mass4.9166Citations (PDF)
256Simulating reactive nitrogen, carbon monoxide, and ozone in California during ARCTAS-CARB 2008 with high wildfire activity
Atmospheric Environment, 2016, 128, 28-44
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257Highly functionalized organic nitrates in the southeast United States: Contribution to secondary organic aerosol and reactive nitrogen budgets5.3333Citations (PDF)
258Materials Properties and Solvated Electron Dynamics of Isolated Nanoparticles and Nanodroplets Probed with Ultrafast Extreme Ultraviolet Beams3.128Citations (PDF)
259Observational Constraints on the Oxidation of NOx in the Upper Troposphere
Journal of Physical Chemistry A, 2016, 120, 1468-1478
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260Estimating the contribution of organic acids to northern hemispheric continental organic aerosol
Geophysical Research Letters, 2015, 42, 6084-6090
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261Global transformation and fate of SOA: Implications of low‐volatility SOA and gas‐phase fragmentation reactions2.1158Citations (PDF)
262Revealing important nocturnal and day‐to‐day variations in fire smoke emissions through a multiplatform inversion
Geophysical Research Letters, 2015, 42, 3609-3618
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263Evolution of brown carbon in wildfire plumes
Geophysical Research Letters, 2015, 42, 4623-4630
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264Modeling the formation and aging of secondary organic aerosols in Los Angeles during CalNex 20103.0163Citations (PDF)
265Investigation of secondary formation of formic acid: urban environment vs. oil and gas producing region3.068Citations (PDF)
266Submicron particle mass concentrations and sources in the Amazonian wet season (AMAZE-08)3.0100Citations (PDF)
267Brown carbon aerosol in the North American continental troposphere: sources, abundance, and radiative forcing3.0113Citations (PDF)
268Organic photolysis reactions in tropospheric aerosols: effect on secondary organic aerosol formation and lifetime3.091Citations (PDF)
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270Sources, seasonality, and trends of southeast US aerosol: an integrated analysis of surface, aircraft, and satellite observations with the GEOS-Chem chemical transport model
Atmospheric Chemistry and Physics, 2015, 15, 10411-10433
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271Characterization of a real-time tracer for isoprene epoxydiols-derived secondary organic aerosol (IEPOX-SOA) from aerosol mass spectrometer measurements
Atmospheric Chemistry and Physics, 2015, 15, 11807-11833
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272Organic nitrate aerosol formation via NO<sub>3</sub> + biogenic volatile organic compounds in the southeastern United States
Atmospheric Chemistry and Physics, 2015, 15, 13377-13392
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273In situ vertical profiles of aerosol extinction, mass, and composition over the southeast United States during SENEX and SEAC 4 RS: observations of a modest aerosol enhancement aloft3.054Citations (PDF)
274Biomass burning dominates brown carbon absorption in the rural southeastern United States
Geophysical Research Letters, 2015, 42, 653-664
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275The Deep Convective Clouds and Chemistry (DC3) Field Campaign0.2183Citations (PDF)
276Aerosol transport and wet scavenging in deep convective clouds: A case study and model evaluation using a multiple passive tracer analysis approach2.167Citations (PDF)
277Elemental composition of organic aerosol: The gap between ambient and laboratory measurements
Geophysical Research Letters, 2015, 42, 4182-4189
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278Statistical precision of the intensities retrieved from constrained fitting of overlapping peaks in high-resolution mass spectra1.969Citations (PDF)
279HO x radical chemistry in oxidation flow reactors with low-pressure mercury lamps systematically examined by modeling1.9146Citations (PDF)
280Gas and aerosol carbon in California: comparison of measurements and model predictions in Pasadena and Bakersfield3.054Citations (PDF)
281Airborne measurements of organosulfates over the continental U.S.2.1110Citations (PDF)
282Long-term real-time chemical characterization of submicron aerosols at Montsec (southern Pyrenees, 1570 m a.s.l.)3.088Citations (PDF)
283Elemental Analysis of Complex Organic Aerosol Using Isotopic Labeling and Unit-Resolution Mass Spectrometry
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284Formation of Low Volatility Organic Compounds and Secondary Organic Aerosol from Isoprene Hydroxyhydroperoxide Low-NO Oxidation8.6197Citations (PDF)
285Modeling the Radical Chemistry in an Oxidation Flow Reactor: Radical Formation and Recycling, Sensitivities, and the OH Exposure Estimation Equation
Journal of Physical Chemistry A, 2015, 119, 4418-4432
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286Solvents Effects on Charge Transfer from Quantum Dots12.133Citations (PDF)
287Elemental ratio measurements of organic compounds using aerosol mass spectrometry: characterization, improved calibration, and implications3.0908Citations (PDF)
288Effect of Vaporizer Temperature on Ambient Non-Refractory Submicron Aerosol Composition and Mass Spectra Measured by the Aerosol Mass Spectrometer1.58Citations (PDF)
289Methods to extract molecular and bulk chemical information from series of complex mass spectra with limited mass resolution1.2112Citations (PDF)
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291The First Combined Thermal Desorption Aerosol Gas Chromatograph—Aerosol Mass Spectrometer (TAG-AMS)1.553Citations (PDF)
292Impacts of Aerosol Aging on Laser Desorption/Ionization in Single-Particle Mass Spectrometers
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293A Technique for Rapid Gas Chromatography Analysis Applied to Ambient Organic Aerosol Measurements from the Thermal Desorption Aerosol Gas Chromatograph (TAG)
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294Mapping Nanoscale Absorption of Femtosecond Laser Pulses Using Plasma Explosion Imaging
ACS Nano, 2014, 8, 8810-8818
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295Wintertime Aerosol Chemistry in Sub-Arctic Urban Air1.530Citations (PDF)
296Observation and Control of Shock Waves in Individual Nanoplasmas5.852Citations (PDF)
297Diurnal cycle of fossil and nonfossil carbon using radiocarbon analyses during CalNex2.188Citations (PDF)
298Spatially and seasonally resolved estimate of the ratio of organic mass to organic carbon
Atmospheric Environment, 2014, 87, 34-40
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299Secondary Organic Aerosol Formation via 2-Methyl-3-buten-2-ol Photooxidation: Evidence of Acid-Catalyzed Reactive Uptake of Epoxides4.943Citations (PDF)
300Effects of sources and meteorology on particulate matter in the Western Mediterranean Basin: An overview of the DAURE campaign2.159Citations (PDF)
301Trends in sulfate and organic aerosol mass in the Southeast U.S.: Impact on aerosol optical depth and radiative forcing
Geophysical Research Letters, 2014, 41, 7701-7709
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302The AeroCom evaluation and intercomparison of organic aerosol in global models
Atmospheric Chemistry and Physics, 2014, 14, 10845-10895
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303Modeling regional aerosol and aerosol precursor variability over California and its sensitivity to emissions and long-range transport during the 2010 CalNex and CARES campaigns
Atmospheric Chemistry and Physics, 2014, 14, 10013-10060
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304Emission factor ratios, SOA mass yields, and the impact of vehicular emissions on SOA formation3.094Citations (PDF)
305Size-resolved aerosol composition and its link to hygroscopicity at a forested site in Colorado3.066Citations (PDF)
306Simulation of semi-explicit mechanisms of SOA formation from glyoxal in aerosol in a 3-D model3.0201Citations (PDF)
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309Organic aerosol components derived from 25 AMS data sets across Europe using a consistent ME-2 based source apportionment approach3.0356Citations (PDF)
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312The 2010 California Research at the Nexus of Air Quality and Climate Change (CalNex) field study2.1221Citations (PDF)
313Photoelectron Spectroscopy of CdSe Nanocrystals in the Gas Phase: A Direct Measure of the Evanescent Electron Wave Function of Quantum Dots
Nano Letters, 2013, 13, 2924-2930
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314Probing molecular associations of field‐collected and laboratory‐generated SOA with nano‐DESI high‐resolution mass spectrometry2.120Citations (PDF)
315Laboratory Studies on Secondary Organic Aerosol Formation from Crude Oil Vapors8.641Citations (PDF)
316Chemically Resolved Particle Fluxes Over Tropical and Temperate Forests1.530Citations (PDF)
317Collection Efficiency of the Aerosol Mass Spectrometer for Chamber-Generated Secondary Organic Aerosols1.560Citations (PDF)
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319Analysis of CCN activity of Arctic aerosol and Canadian biomass burning during summer 20083.0128Citations (PDF)
320Fluxes of Fine Particles Over a Semi-Arid Pine Forest: Possible Effects of a Complex Terrain1.520Citations (PDF)
321Detailed chemical characterization of unresolved complex mixtures in atmospheric organics: Insights into emission sources, atmospheric processing, and secondary organic aerosol formation2.172Citations (PDF)
322Insights on organic aerosol aging and the influence of coal combustion at a regional receptor site of central eastern China
Atmospheric Chemistry and Physics, 2013, 13, 10095-10112
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323Presenting SAPUSS: Solving Aerosol Problem by Using Synergistic Strategies in Barcelona, Spain3.029Citations (PDF)
324Chemical evolution of organic aerosol in Los Angeles during the CalNex 2010 study
Atmospheric Chemistry and Physics, 2013, 13, 10125-10141
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325Secondary organic aerosol formation and primary organic aerosol oxidation from biomass-burning smoke in a flow reactor during FLAME-3
Atmospheric Chemistry and Physics, 2013, 13, 11551-11571
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326Observations of total RONO 2 over the boreal forest: NO x sinks and HNO 3 sources3.091Citations (PDF)
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331Secondary organic aerosol formation from semi‐ and intermediate‐volatility organic compounds and glyoxal: Relevance of O/C as a tracer for aqueous multiphase chemistry
Geophysical Research Letters, 2013, 40, 978-982
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338Evaluation of Composition-Dependent Collection Efficiencies for the Aerodyne Aerosol Mass Spectrometer using Field Data1.5847Citations (PDF)
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340Identification and quantification of organic aerosol from cooking and other sources in Barcelona using aerosol mass spectrometer data3.0507Citations (PDF)
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347Organosulfates as Tracers for Secondary Organic Aerosol (SOA) Formation from 2-Methyl-3-Buten-2-ol (MBO) in the Atmosphere8.6144Citations (PDF)
348Nitrogen Incorporation in CH 4 -N 2 Photochemical Aerosol Produced by Far Ultraviolet Irradiation
Astrobiology, 2012, 12, 315-326
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349Molecular marker characterization of the organic composition of submicron aerosols from Mediterranean urban and rural environments under contrasting meteorological conditions
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350On the gas‐particle partitioning of soluble organic aerosol in two urban atmospheres with contrasting emissions: 2. Gas and particle phase formic acid3.657Citations (PDF)
351Sectoral and geographical contributions to summertime continental United States (CONUS) black carbon spatial distributions
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352Aerosol optical properties at Pasadena, CA during CalNex 2010
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357Formation of Nitrogen-Containing Oligomers by Methylglyoxal and Amines in Simulated Evaporating Cloud Droplets8.6260Citations (PDF)
358Carbon oxidation state as a metric for describing the chemistry of atmospheric organic aerosol
Nature Chemistry, 2011, 3, 133-139
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361Mass-spectrometric identification of primary biological particle markers and application to pristine submicron aerosol measurements in Amazonia
Atmospheric Chemistry and Physics, 2011, 11, 11415-11429
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362Relating hygroscopicity and composition of organic aerosol particulate matter3.0356Citations (PDF)
363Effects of aging on organic aerosol from open biomass burning smoke in aircraft and laboratory studies
Atmospheric Chemistry and Physics, 2011, 11, 12049-12064
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364Aerosol mass spectrometer constraint on the global secondary organic aerosol budget
Atmospheric Chemistry and Physics, 2011, 11, 12109-12136
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365Measurements of volatile organic compounds at a suburban ground site (T1) in Mexico City during the MILAGRO 2006 campaign: measurement comparison, emission ratios, and source attribution3.0138Citations (PDF)
366Origins and composition of fine atmospheric carbonaceous aerosol in the Sierra Nevada Mountains, California
Atmospheric Chemistry and Physics, 2011, 11, 10219-10241
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367Fossil versus contemporary sources of fine elemental and organic carbonaceous particulate matter during the DAURE campaign in Northeast Spain
Atmospheric Chemistry and Physics, 2011, 11, 12067-12084
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368The 2005 Study of Organic Aerosols at Riverside (SOAR-1): instrumental intercomparisons and fine particle composition
Atmospheric Chemistry and Physics, 2011, 11, 12387-12420
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369Sources of carbonaceous aerosols and deposited black carbon in the Arctic in winter-spring: implications for radiative forcing
Atmospheric Chemistry and Physics, 2011, 11, 12453-12473
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370Exploring the vertical profile of atmospheric organic aerosol: comparing 17 aircraft field campaigns with a global model
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371Multi-scale modeling study of the source contributions to near-surface ozone and sulfur oxides levels over California during the ARCTAS-CARB period3.022Citations (PDF)
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373Comparison of chemical characteristics of 495 biomass burning plumes intercepted by the NASA DC-8 aircraft during the ARCTAS/CARB-2008 field campaign
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374Importance of secondary sources in the atmospheric budgets of formic and acetic acids3.0307Citations (PDF)
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385Chemical Smoke Marker Emissions During Flaming and Smoldering Phases of Laboratory Open Burning of Wildland Fuels1.5168Citations (PDF)
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Atmospheric Chemistry and Physics, 2010, 10, 10997-11016
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393An overview of the Amazonian Aerosol Characterization Experiment 2008 (AMAZE-08)
Atmospheric Chemistry and Physics, 2010, 10, 11415-11438
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406The Formation of Sulfate and Elemental Sulfur Aerosols under Varying Laboratory Conditions: Implications for Early Earth
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