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Science Advances|August 5, 2017
Crystal nucleation initiated by transient ion-surface interactions at aerosol interfacesRyan D Davis, Margaret A TolbertThe Journal of Physical Chemistry. A|February 25, 2025
Crystalline Organic Compounds as Effective Nuclei in Contact Efflorescence of Ammonium SulfateKyle A McMillan, Ryan D Davis, Margaret A TolbertThe Journal of Physical Chemistry. A|January 16, 2018
Immersion and Contact Efflorescence Induced by Mineral Dust ParticlesShuichi B Ushijima, Ryan D Davis, Margaret A TolbertThe Journal of Physical Chemistry. A|September 23, 2021
Seeded Crystal Growth of Internally Mixed Organic-Inorganic Aerosols: Impact of Organic Phase StateShuichi B Ushijima, Erik Huynh, Ryan D Davis, et al.Analytical Chemistry|May 12, 2015
Long Working-Distance Optical Trap for in Situ Analysis of Contact-Induced Phase TransformationsRyan D Davis, Sara Lance, Joshua A Gordon, et al.Analytical Chemistry|October 31, 2017
Colliding-Droplet Microreactor: Rapid On-Demand Inertial Mixing and Metal-Catalyzed Aqueous Phase Oxidation ProcessesRyan D Davis, Michael I Jacobs, Frances A Houle, et al.Analytical Chemistry|January 17, 2020
Dual-Balance Electrodynamic Trap as a Microanalytical Tool for Identifying Gel Transitions and Viscous Properties of Levitated Aerosol ParticlesDavid S Richards, Kristin L Trobaugh, Josefina Hajek-Herrera, et al.Journal of the American Society for Mass Spectrometry|October 31, 2018
Studying Chemistry in Micro-compartments by Separating Droplet Generation from IonizationMichael I Jacobs, Ryan D Davis, Rebecca J Rapf, et al.The Journal of Chemical Physics|July 19, 2012
Oxygen isotope fractionation in the vacuum ultraviolet photodissociation of carbon monoxide: wavelength, pressure, and temperature dependencySubrata Chakraborty, Ryan D Davis, Musahid Ahmed, et al.Proceedings of the National Academy of Sciences of the United States of America|December 16, 2015
Contact efflorescence as a pathway for crystallization of atmospherically relevant particlesRyan D Davis, Sara Lance, Joshua A Gordon, et al.Pageof 2