Area of research
Atmospheric Science · Health, Toxicology and Mutagenesis
Research interest
Research focused on Sulfuric acid and Nucleation, with related work in Iodine, Ammonia, Aerosol. Notable publications include 'Rapid growth of new atmospheric particles by nitric acid and ammonia condensation', 'Role of iodine oxoacids in atmospheric aerosol nucleation', and 'Molecular understanding of new-particle formation from α -pinene between −50 and +25 °C'.
Ammonium CI-Orbitrap: a tool for characterizing the reactivity of oxygenated organic molecules
Polyethylene Degradation by a <i>Rhodococcous</i> Strain Isolated from Naturally Weathered Plastic Waste Enrichment
Iodine oxoacids enhance nucleation of sulfuric acid particles in the atmosphere
Molecular Understanding of the Enhancement in Organic Aerosol Mass at High Relative Humidity
Synergistic HNO3–H2SO4–NH3 upper tropospheric particle formation
High Gas-Phase Methanesulfonic Acid Production in the OH-Initiated Oxidation of Dimethyl Sulfide at Low Temperatures
The gas-phase formation mechanism of iodic acid as an atmospheric aerosol source
Role of iodine oxoacids in atmospheric aerosol nucleation
Structures and reactivity of peroxy radicals and dimeric products revealed by online tandem mass spectrometry
Rapid growth of new atmospheric particles by nitric acid and ammonia condensation
Molecular understanding of new-particle formation from <i>α</i> -pinene between −50 and +25 °C
Online Aerosol Chemical Characterization by Extractive Electrospray Ionization–Ultrahigh-Resolution Mass Spectrometry (EESI-Orbitrap)
Enhancement of active thin-layer capping with natural zeolite to simultaneously inhibit nutrient and heavy metal release from sediments