Area of research
Condensed Matter Physics · Spectroscopy
Research interest
Research interests include Physics of Superconductivity and Magnetism, Spectroscopy and Laser Applications, Advanced Condensed Matter Physics, and Atmospheric Ozone and Climate.
Tropospheric Fate of Methylhydroxycarbene and the Ability of a Single Water Molecule to Efficiently Promote Its Isomerization into Acetaldehyde.
Near Threshold Unimolecular Dissociation of Peroxyformic Acid Initiated by Vibrational Overtone Excitation.
Isomerization of Methylhydroxycarbene in Isolation and Mediated by Its Interactions with Ammonia and Formic Acid.
Unveiling a Hidden Route to Tropospheric Acetaldehyde: The Water-Assisted Reactivity of Methylhydroxycarbene···Water Dimer
Atmospheric Ring-Closure and Dehydration Reactions of 1,4-Hydroxycarbonyls in the Gas Phase: The Impact of Catalysts.
Role of Double Hydrogen Atom Transfer Reactions in Atmospheric Chemistry
Hydrolysis of Glyoxal in Water-Restricted Environments: Formation of Organic Aerosol Precursors through Formic Acid Catalysis
Gas Phase Hydrolysis of Formaldehyde To Form Methanediol: Impact of Formic Acid Catalysis
The influence of hydrogen bonding on the atmospheric chemistry of peroxy and carboxylic acids
State selected studies of vibrational photochemistry and dissociation dynamics of atmospheric molecules
Exploring Mode Selective Behavior in State-Resolved Unimolecular Reactions
Exploring Mode Selective Behavior in the Dissociation Dynamics of Vibrationally Excited Molecules
Investigation of Vibrational Mode Selectivity in State- Selected Bimolecular Reactions