Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Atmospheric chemistry and aerosols, Atmospheric aerosols and clouds, Atmospheric Ozone and Climate, and Air Quality and Health Impacts.
Anthropogenic organic aerosol in Europe produced mainly through second-generation oxidation
Iodine oxoacids enhance nucleation of sulfuric acid particles in the atmosphere
Molecular Understanding of the Enhancement in Organic Aerosol Mass at High Relative Humidity
NO at low concentration can enhance the formation of highly oxygenated biogenic molecules in the atmosphere
Impact of 2020 COVID-19 lockdowns on particulate air pollution across Europe
Tropical and Boreal Forest – Atmosphere Interactions: A Review
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
The Synergistic Role of Sulfuric Acid, Bases, and Oxidized Organics Governing New‐Particle Formation in Beijing
The driving factors of new particle formation and growth in the polluted boundary layer
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
Photo-oxidation of Aromatic Hydrocarbons Produces Low-Volatility Organic Compounds
Enhanced growth rate of atmospheric particles from sulfuric acid
Size-dependent influence of NO <sub>x</sub> on the growth rates of organic aerosol particles
Molecular understanding of the suppression of new-particle formation by isoprene
New Particle Formation in the Atmosphere: From Molecular Clusters to Global Climate
Overview of the Antarctic Circumnavigation Expedition: Study of Preindustrial-like Aerosols and Their Climate Effects (ACE-SPACE)
Formation of Highly Oxygenated Organic Molecules from α-Pinene Ozonolysis: Chemical Characteristics, Mechanism, and Kinetic Model Development
Molecular Composition and Volatility of Nucleated Particles from α-Pinene Oxidation between −50 °C and +25 °C
Multicomponent new particle formation from sulfuric acid, ammonia, and biogenic vapors
Rapid growth of organic aerosol nanoparticles over a wide tropospheric temperature range
New particle formation in the sulfuric acid–dimethylamine–water system: reevaluation of CLOUD chamber measurements and comparison to an aerosol nucleation and growth model
Causes and importance of new particle formation in the present‐day and preindustrial atmospheres
Measurements of sub-3 nm particles using a particle size magnifier in different environments: from clean mountain top to polluted megacities
The role of low-volatility organic compounds in initial particle growth in the atmosphere
Ion-induced nucleation of pure biogenic particles
Global atmospheric particle formation from CERN CLOUD measurements