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 Air Quality and Health Impacts.
Widespread detection of chlorine oxyacids in the Arctic atmosphere
Role of iodine oxoacids in atmospheric aerosol nucleation
The Synergistic Role of Sulfuric Acid, Bases, and Oxidized Organics Governing New‐Particle Formation in Beijing
Molecular Composition of Oxygenated Organic Molecules and Their Contributions to Organic Aerosol in Beijing
Differing Mechanisms of New Particle Formation at Two Arctic Sites
Is reducing new particle formation a plausible solution to mitigate particulate air pollution in Beijing and other Chinese megacities?
Continuous and comprehensive atmospheric observations in Beijing: a station to understand the complex urban atmospheric environment
Insights into atmospheric oxidation processes by performing factor analyses on subranges of mass spectra
Highly Oxygenated Organic Molecules (HOM) from Gas-Phase Autoxidation Involving Peroxy Radicals: A Key Contributor to Atmospheric Aerosol
A novel approach for simple statistical analysis of high-resolution mass spectra
Atmospheric new particle formation from sulfuric acid and amines in a Chinese megacity
Ion-induced sulfuric acid–ammonia nucleation drives particle formation in coastal Antarctica
Exploring non-linear associations between atmospheric new-particle formation and ambient variables: a mutual information approach
The role of low-volatility organic compounds in initial particle growth in the atmosphere
Ion-induced nucleation of pure biogenic particles
New particle formation in the free troposphere: A question of chemistry and timing
Reduced anthropogenic aerosol radiative forcing caused by biogenic new particle formation
Source characterization of highly oxidized multifunctional compounds in a boreal forest environment using positive matrix factorization
Effect of ions on sulfuric acid‐water binary particle formation: 2. Experimental data and comparison with QC‐normalized classical nucleation theory
On the composition of ammonia–sulfuric-acid ion clusters during aerosol particle formation
Estimating the contribution of organic acids to northern hemispheric continental organic aerosol
A large source of low-volatility secondary organic aerosol
Oxidation Products of Biogenic Emissions Contribute to Nucleation of Atmospheric Particles
Neutral molecular cluster formation of sulfuric acid–dimethylamine observed in real time under atmospheric conditions
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
Biogenic and biomass burning organic aerosol in a boreal forest at Hyytiälä, Finland, during HUMPPA-COPEC 2010
Online atmospheric pressure chemical ionization ion trap mass spectrometry (APCI-IT-MS <sup>n</sup> ) for measuring organic acids in concentrated bulk aerosol – a laboratory and field study
In situ submicron organic aerosol characterization at a boreal forest research station during HUMPPA-COPEC 2010 using soft and hard ionization mass spectrometry