Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Atmospheric chemistry and aerosols, Atmospheric Ozone and Climate, Atmospheric aerosols and clouds, and Advanced Chemical Physics Studies.
Dynamics of hydrogen shift reactions between peroxy radicals
Iodine oxoacids enhance nucleation of sulfuric acid particles in the atmosphere
Selective deuteration as a tool for resolving autoxidation mechanisms in <i>α</i> -pinene ozonolysis
The gas-phase formation mechanism of iodic acid as an atmospheric aerosol source
Critical Role of Iodous Acid in Neutral Iodine Oxoacid Nucleation
Energy transfer, pre-reactive complex formation and recombination reactions during the collision of peroxy radicals
Computed Pre-reactive Complex Association Lifetimes Explain Trends in Experimental Reaction Rates for Peroxy Radical Recombinations
Role of iodine oxoacids in atmospheric aerosol nucleation
Atmospheric Sulfuric Acid‐Dimethylamine Nucleation Enhanced by Trifluoroacetic Acid
Unprecedented Ambient Sulfur Trioxide (SO<sub>3</sub>) Detection: Possible Formation Mechanism and Atmospheric Implications
Highly Oxygenated Organic Molecules (HOM) from Gas-Phase Autoxidation Involving Peroxy Radicals: A Key Contributor to Atmospheric Aerosol
Chamber-based insights into the factors controlling epoxydiol (IEPOX) secondary organic aerosol (SOA) yield, composition, and volatility
A large source of low-volatility secondary organic aerosol
Computational Study of the Effect of Glyoxal–Sulfate Clustering on the Henry’s Law Coefficient of Glyoxal
Direct Observations of Atmospheric Aerosol Nucleation
Molecular understanding of sulphuric acid–amine particle nucleation in the atmosphere
Molecular understanding of atmospheric particle formation from sulfuric acid and large oxidized organic molecules