Collisions of molecules and clusters play a key role in determining the rate of atmospheric new particle formation and growth. Traditionally the statistics of these collisions are taken from kinetic gas theory assuming spherical noninteracting particles, which may significantly underestimate the collision coefficients for most atmospherically relevant molecules. Such systematic errors in predicted new particle formation rates will also affect large-scale climate models. We studied the statistics of collisions of sulfuric acid molecules in a vacuum using atomistic molecular dynamics simulations. We found that the effective collision cross section of the H2SO4 molecule, as described by an optimized potentials for liquid simulation (OPLS). OPL...
For atmospheric sulfuric acid (SA) concentrations the presence of dimethylamine (DMA) at mixing rati...
Nucleation of aerosol particles from trace atmospheric vapours is thought to provide up to half of g...
Sulphuric acid is a key component in atmospheric new particle formation. However, sulphuric acid alo...
Collisions of molecules and clusters play a key role in determining the rate of atmospheric new part...
Kinetics of collision-sticking processes between vapor molecules and clusters of low-volatility comp...
In the present-day atmosphere, sulfuric acid is the most important vapour for aerosol particle forma...
We tested the influence of various parameters on the new particle formation rate predicted for the s...
A recent CLOUD (Cosmics Leaving OUtdoor Droplets) chamber study showed that sulfuric acid and dimeth...
Lack of knowledge about the mechanisms underlying new particle formation and their subsequent growth...
We have developed new parameterizations of electrically neutral homogeneous and ion-induced sulfuric...
A recent CLOUD (Cosmics Leaving OUtdoor Droplets) chamber study showed that sulfuric acid and dimeth...
Sulphuric acid is a key component in atmospheric new particle formation. However, sulphuric acid alo...
We investigated the impact of various parameters on new particle formation rates predicted for the s...
Sulphuric acid is a key component in atmospheric new particle formation. However, sulphuric acid alo...
Recent experimental evidence suggests that diamines can enhance atmospheric new particle formation m...
For atmospheric sulfuric acid (SA) concentrations the presence of dimethylamine (DMA) at mixing rati...
Nucleation of aerosol particles from trace atmospheric vapours is thought to provide up to half of g...
Sulphuric acid is a key component in atmospheric new particle formation. However, sulphuric acid alo...
Collisions of molecules and clusters play a key role in determining the rate of atmospheric new part...
Kinetics of collision-sticking processes between vapor molecules and clusters of low-volatility comp...
In the present-day atmosphere, sulfuric acid is the most important vapour for aerosol particle forma...
We tested the influence of various parameters on the new particle formation rate predicted for the s...
A recent CLOUD (Cosmics Leaving OUtdoor Droplets) chamber study showed that sulfuric acid and dimeth...
Lack of knowledge about the mechanisms underlying new particle formation and their subsequent growth...
We have developed new parameterizations of electrically neutral homogeneous and ion-induced sulfuric...
A recent CLOUD (Cosmics Leaving OUtdoor Droplets) chamber study showed that sulfuric acid and dimeth...
Sulphuric acid is a key component in atmospheric new particle formation. However, sulphuric acid alo...
We investigated the impact of various parameters on new particle formation rates predicted for the s...
Sulphuric acid is a key component in atmospheric new particle formation. However, sulphuric acid alo...
Recent experimental evidence suggests that diamines can enhance atmospheric new particle formation m...
For atmospheric sulfuric acid (SA) concentrations the presence of dimethylamine (DMA) at mixing rati...
Nucleation of aerosol particles from trace atmospheric vapours is thought to provide up to half of g...
Sulphuric acid is a key component in atmospheric new particle formation. However, sulphuric acid alo...