Publications
2024
(2024) Carbon Adsorbent Properties Impact Hydrated Electron Activity and Perfluorocarboxylic Acid (PFCA) Destruction, ACS ES&T Engineering, url, doi:10.1021/acsestengg.4c00211
2023
(2023) Conflicts of Interest in the Assessment of Chemicals, Waste, and Pollution, Environmental Science & Technology 0(0), url, doi:10.1021/acs.est.3c04213
(2023) Nontarget analysis and fluorine atom balances of transformation products from UV/sulfite degradation of perfluoroalkyl contaminants, Environmental Science: Processes and Impacts 25(3), p. 472-483, The Royal Society of Chemistry, url, doi:10.1039/d2em00425a
2022
(2022) Preventing spread of aerosolized infectious particles during medical procedures: A lab-based analysis of an inexpensive plastic enclosure, PLOS ONE 17(9), p. e0273194, Public Library of Science, url, doi:10.1371/JOURNAL.PONE.0273194
(2022) Evaluation of iodide chemical ionization mass spectrometry for gas and aerosol-phase per- and polyfluoroalkyl substances (PFAS) analysis, Environmental Science: Processes & Impacts, The Royal Society of Chemistry, url, doi:10.1039/D2EM00275B
(2022) A universally applicable method of calculating confidence bands for ice nucleation spectra derived from droplet freezing experiments, Atmospheric Measurement Techniques 15(22), p. 6819-6836, url, doi:10.5194/amt-15-6819-2022
(2022) Volcanic ash ice nucleation activity is variably reduced by aging in water and sulfuric acid: the effects of leaching, dissolution, and precipitation, Environmental Science: Atmospheres 2(1), p. 85-99, url, doi:10.1039/D1EA00071C
2021
(2021) Morphology of Organic Carbon Coatings on Biomass-Burning Particles and Their Role in Reactive Gas Uptake, ACS Earth and Space Chemistry 5(9), p. 2184-2195, url, doi:10.1021/acsearthspacechem.1c00237
(2021) Response of the Reaction Probability of N2O5 with Authentic Biomass-Burning Aerosol to High Relative Humidity, ACS Earth and Space Chemistry 5(10), p. 2587-2598, url, doi:10.1021/acsearthspacechem.1c00227
(2021) Aerosol–Ice Formation Closure: A Southern Great Plains Field Campaign, Bulletin of the American Meteorological Society 102(10), p. E1952-E1971, American Meteorological Society, url, doi:10.1175/BAMS-D-20-0151.1
(2021) Atmospheric aging enhances the ice nucleation ability of biomass-burning aerosol, Science Advances 7(9), p. eabd3440, American Association for the Advancement of Science, url, doi:10.1126/sciadv.abd3440
(2021) Metallic and Crustal Elements in Biomass-Burning Aerosol and Ash: Prevalence, Significance, and Similarity to Soil Particles, ACS Earth and Space Chemistry 5(1), p. 136-148, American Chemical Society, url, doi:10.1021/acsearthspacechem.0c00191
(2021) Single-particle elemental analysis of vacuum bag dust samples collected from the International Space Station by SEM/EDX and sp-ICP-ToF-MS, Aerosol Science and Technology 55(5), p. 571-585, url, doi:10.1080/02786826.2021.1874610
2020
(2020) Aerosol Optical Tweezers Elucidate the Chemistry, Acidity, Phase Separations, and Morphology of Atmospheric Microdroplets, Accounts of Chemical Research 53(11), p. 2498-2509, url, doi:10.1021/acs.accounts.0c00407
(2020) A simple, effective enclosure with disposable coverings for inexpensive containment of aerosolized COVID viruses during tracheal intubation and extubation, medRxiv, p. 2020.11.23.20237255, Cold Spring Harbor Laboratory Press, url, doi:10.1101/2020.11.23.20237255
(2020) In Situ pH Measurements of Individual Levitated Microdroplets Using Aerosol Optical Tweezers, Analytical Chemistry 92(1), p. 1089-1096, url, doi:10.1021/acs.analchem.9b04152
(2020) Moving beyond Fine Particle Mass: High-Spatial Resolution Exposure to Source-Resolved Atmospheric Particle Number and Chemical Mixing State, Environmental Health Perspectives 128(1), p. 017009, Environmental Health Perspectives, url, doi:10.1289/EHP5311
(2020) Quantifying errors in the aerosol mixing-state index based on limited particle sample size, Aerosol Science and Technology 54(12), p. 1527-1541, url, doi:10.1080/02786826.2020.1804523
(2020) Aerosol Optical Tweezers Constrain the Morphology Evolution of Liquid-Liquid Phase-Separated Atmospheric Particles, Chem 6(1), p. 204-220, url, doi:10.1016/j.chempr.2019.10.018
(2020) Biomass combustion produces ice-active minerals in biomass-burning aerosol and bottom ash, Proceedings of the National Academy of Sciences 117(36), p. 21928-21937, url, doi:10.1073/pnas.1922128117
(2020) Development and characterization of a “store and create” microfluidic device to determine the heterogeneous freezing properties of ice nucleating particles, Aerosol Science and Technology 54(1), p. 79-93, url, doi:10.1080/02786826.2019.1679349
2019
(2019) Exposure Beyond Mass: High-spatial Resolution Exposure to Source-resolved Atmospheric Particle Number and Chemical Mixing State, Environmental Epidemiology 3, p. 13, url, doi:10.1097/01.EE9.0000605744.93522.67
(2019) Role of Feldspar and Pyroxene Minerals in the Ice Nucleating Ability of Three Volcanic Ashes, ACS Earth and Space Chemistry 3(4), p. 626-636, American Chemical Society, url, doi:10.1021/acsearthspacechem.9b00004
(2019) Characteristics of Ice Nucleating Particles in and Around California Winter Storms, Journal of Geophysical Research: Atmospheres 124(21), p. 11530-11551, John Wiley & Sons, Ltd, url, doi:10.1029/2019JD030831
(2019) N2O5 reactive uptake kinetics and chlorine activation on authentic biomass-burning aerosol, Environmental Science: Processes and Impacts 21(10), p. 1684-1698, The Royal Society of Chemistry, url, doi:10.1039/c9em00330d
(2019) Using Ionic Liquids To Study the Migration of Semivolatile Organic Vapors in Smog Chamber Experiments, The Journal of Physical Chemistry A 123(17), p. 3887-3892, American Chemical Society, url, doi:10.1021/acs.jpca.9b02847
(2019) A comprehensive characterization of ice nucleation by three different types of cellulose particles immersed in water, Atmospheric Chemistry and Physics 19(7), p. 4823-4849, url, doi:10.5194/acp-19-4823-2019
(2019) Heterogeneous ice nucleation properties of natural desert dust particles coated with a surrogate of secondary organic aerosol, Atmospheric Chemistry and Physics 19(7), p. 5091-5110, url, doi:10.5194/acp-19-5091-2019
(2019) Production of Secondary Organic Aerosol During Aging of Biomass Burning Smoke From Fresh Fuels and Its Relationship to VOC Precursors, Journal of Geophysical Research: Atmospheres 124(6), p. 3583-3606, url, doi:10.1029/2018JD029068
2018
(2018) Cleaning up our water: reducing interferences from nonhomogeneous freezing of “pure” water in droplet freezing assays of ice-nucleating particles, Atmospheric Measurement Techniques 11(9), p. 5315-5334, url, doi:10.5194/amt-11-5315-2018
(2018) Spatial Variability of Sources and Mixing State of Atmospheric Particles in a Metropolitan Area, Environmental Science & Technology 52(12), p. 6807-6815, American Chemical Society, url, doi:10.1021/acs.est.8b01011
(2018) Production of N2O5 and ClNO2 through nocturnal processing of biomass-burning aerosol, Environmental Science & Technology 52(2), p. 550-559, url, doi:10.1021/acs.est.7b04386
(2018) The Fifth International Workshop on Ice Nucleation phase 2 (FIN-02): laboratory intercomparison of ice nucleation measurements, Atmospheric Measurement Techniques 11(11), p. 6231-6257, url, doi:10.5194/amt-11-6231-2018
(2018) Emerging investigator series: determination of biphasic core–shell droplet properties using aerosol optical tweezers, Environmental Science: Processes & Impacts 20(11), p. 1512-1523, url, doi:10.1039/C8EM00166A
(2018) Mass accommodation coefficients of fresh and aged biomass-burning emissions, Aerosol Science and Technology 52(3), p. 300-309, Taylor & Francis, url, doi:10.1080/02786826.2017.1413488
(2018) Following particle-particle mixing in atmospheric secondary organic aerosols by using isotopically labeled terpenes, Chem 4(2), p. 318-333, url, doi:10.1016/j.chempr.2017.12.008
(2018) Characterization of Individual Aerosol Particles, Physical Chemistry of Gas-Liquid Interfaces, Jennifer Faust, Jim House (ed.), p. 353-402, Elsevier, url, doi:10.1016/B978-0-12-813641-6.00012-1
2017
(2017) Emulsified and Liquid–Liquid Phase-Separated States of α-Pinene Secondary Organic Aerosol Determined Using Aerosol Optical Tweezers, Environmental Science & Technology 51(21), p. 12154-12163, American Chemical Society, url, doi:10.1021/acs.est.7b03250
(2017) A new multicomponent heterogeneous ice nucleation model and its application to Snomax bacterial particles and a Snomax–illite mineral particle mixture, Atmospheric Chemistry and Physics 17(22), p. 13545-13557, url, doi:10.5194/acp-17-13545-2017
(2017) A dual-chamber method for quantifying the effects of atmospheric perturbations on secondary organic aerosol formation from biomass burning emissions, Journal of Geophysical Research: Atmospheres 122(11), p. 6043-6058, url, doi:10.1002/2016JD025784
2016
(2016) Effect of particle surface area on ice active site densities retrieved from droplet freezing spectra, Atmospheric Chemistry and Physics 16(20), p. 13359-13378, Copernicus GmbH, url, doi:10.5194/acp-16-13359-2016
(2016) Effect of secondary organic aerosol coating thickness on the real-time detection and characterization of biomass-burning soot by two particle mass spectrometers, Atmospheric Measurement Techniques 9(12), p. 6117-6137, Copernicus GmbH, url, doi:10.5194/amt-9-6117-2016
(2016) Where Did This Particle Come From? Sources of Particle Number and Mass for Human Exposure Estimates, Airborne Particulate Matter : Sources, Atmospheric Processes and Health, R. M. Harrison, R. E. Hester, X. Querol (ed.), p. 35-71, Royal Society of Chemistry, url, doi:10.1039/9781782626589-00035
(2016) Advanced aerosol optical tweezers chamber design to facilitate phase-separation and equilibration timescale experiments on complex droplets, Aerosol Science and Technology 50(12), p. 1327-1341, Taylor & Francis, url, doi:10.1080/02786826.2016.1224317
(2016) Optical properties of black carbon in cookstove emissions coated with secondary organic aerosols: Measurements and modeling, Aerosol Science and Technology 50(11), p. 1264-1276, Taylor & Francis, url, doi:10.1080/02786826.2016.1225947
(2016) The unstable ice nucleation properties of Snomax® bacterial particles, Journal of Geophysical Research: Atmospheres 121(19), p. 11,666-11,678, url, doi:10.1002/2016JD025251
(2016) Mixing of secondary organic aerosols versus relative humidity, Proceedings of the National Academy of Sciences 113(45), p. 12649-12654, url, doi:10.1073/pnas.1604536113
(2016) Sea spray aerosol as a unique source of ice nucleating particles, Proceedings of the National Academy of Sciences 113(21), p. 5797-5803, url, doi:10.1073/pnas.1514034112
2015
(2015) Integrating laboratory and field data to quantify the immersion freezing ice nucleation activity of mineral dust particles, Atmospheric Chemistry and Physics 15(1), p. 393-409, Copernicus GmbH, url, doi:10.5194/acp-15-393-2015
2014
(2014) Brownness of organics in aerosols from biomass burning linked to their black carbon content, Nature Geoscience 7(9), p. 647-650, Nature Publishing Group, url, doi:10.1038/ngeo2220
(2014) Trace gas emissions from combustion of peat, crop residue, domestic biofuels, grasses, and other fuels: configuration and Fourier transform infrared (FTIR) component of the fourth Fire Lab at Missoula Experiment (FLAME-4), Atmospheric Chemistry and Physics 14(18), p. 9727-9754, Copernicus GmbH, url, doi:10.5194/acp-14-9727-2014
(2014) Influence of functional groups on organic aerosol cloud condensation nucleus activity, Environmental Science and Technology 48(17), p. 10182-90, American Chemical Society, url, doi:10.1021/es502147y
2013
(2013) The common occurrence of highly supercooled drizzle and rain near the coastal regions of the western United States, Journal of Geophysical Research: Atmospheres 118(17), p. 9819-9833, url, doi:10.1002/jgrd.50529
(2013) Bringing the ocean into the laboratory to probe the chemical complexity of sea spray aerosol., Proceedings of the National Academy of Sciences of the United States of America 110(19), p. 7550-5, url, doi:10.1073/pnas.1300262110
(2013) Dust and biological aerosols from the Sahara and Asia influence precipitation in the western U.S., Science (New York, N.Y.) 339(6127), p. 1572-1578, url, doi:10.1126/science.1227279
2012
(2012) Biomass burning as a potential source for atmospheric ice nuclei: Western wildfires and prescribed burns, Geophysical Research Letters 39(11), url, doi:10.1029/2012GL051915
(2012) Hygroscopicity frequency distributions of secondary organic aerosols, Journal of Geophysical Research – Atmospheres 117(D4), p. D04207, url, doi:10.1029/2011JD016823
(2012) An annual cycle of size-resolved aerosol hygroscopicity at a forested site in Colorado, Journal of Geophysical Research – Atmospheres 117(D6), p. D06201, url, doi:10.1029/2011JD016854
2011
(2011) Surface modification of mineral dust particles by sulphuric acid processing: implications for ice nucleation abilities, Atmospheric Chemistry and Physics 11, p. 7839-7858, doi:10.5194/acp-11-7839-2011
(2011) Experimental study of the role of physicochemical surface processing on the IN ability of mineral dust particles, Atmospheric Chemistry and Physics 11, p. 11131-11144
2010
(2010) Impact of particle generation method on the apparent hygroscopicity of insoluble mineral particles, Aerosol Science and Technology 44(10), p. 830-846, doi:10.1080/02786826.2010.497514
(2010) Chemical processing does not always impair heterogeneous ice nucleation of mineral dust particles, Geophysical Research Letters 37(24), url, doi:10.1029/2010GL045540
(2010) Irreversible loss of ice nucleation active sites in mineral dust particles caused by sulphuric acid condensation, Atmospheric Chemistry and Physics 10, p. 11471-11487
(2010) Detection of oxygen isotopic anomaly in terrestrial atmospheric carbonates and its implications to Mars, Proceedings Of The National Academy Of Sciences Of The United States Of America 107(47), p. 20213-20218, url, doi:10.1073/pnas.1014399107
2009
(2009) Timescale for hygroscopic conversion of calcite mineral particles through heterogeneous reaction with nitric acid, Physical Chemistry Chemical Physics 11(36), p. 7826, pubmed, doi:10.1039/b904217b
(2009) Role of molecular size in cloud droplet activation, Geophysical Research Letters 36(22), p. L22801, url, doi:10.1029/2009GL040131
(2009) Effect of chemical mixing state on the hygroscopicity and cloud nucleation properties of calcium mineral dust particles, Atmospheric Chemistry and Physics 9(10), p. 3303-3316, url, doi:10.5194/acp-9-3303-2009
2007
(2007) Direct observations of the atmospheric processing of Asian mineral dust, Atmospheric Chemistry and Physics 7(5), p. 1213-1236, url, doi:10.5194/acp-7-1213-2007
(2007) Mineral dust is a sink for chlorine in the marine boundary layer, Atmospheric Environment 41(34), p. 7166-7179, url, doi:10.1016/j.atmosenv.2007.05.047
(2007) Investigations of the Diurnal Cycle and Mixing State of Oxalic Acid in Individual Particles in Asian Aerosol Outflow, Environmental Science & Technology 41(23), p. 8062-8069, url, doi:10.1021/es071134g
2006
(2006) Characterization of Asian Dust during ACE-Asia, Global and Planetary Change 52(1-4), p. 23-56, url, doi:10.1016/j.gloplacha.2006.02.013
2005
(2005) Recent Advances in Our Understanding of Atmospheric Chemistry and Climate Made Possible by On-Line Aerosol Analysis Instrumentation, Analytical Chemistry 77(12), p. 3861-3886, url, doi:10.1021/ac050716i
(2005) Initial uptake of ozone on Saharan dust at atmospheric relative humidities, Geophysical Research Letters 32(14), p. L14815, url, doi:10.1029/2005GL023317
2004
(2004) Ozone decomposition kinetics on alumina: effects of ozone partial pressure, relative humidity and repeated oxidation cycles, Atmospheric Chemistry and Physics 4(5), p. 1301-1310, url