Information on the rate of diffusion of organic molecules within secondary organic aerosol (SOA) is needed to accurately predict the effects of SOA on climate and air quality. Diffusion can be important for predicting the growth, evaporation, and reaction rates of SOA under certain atmospheric conditions. Often, researchers have predicted diffusion rates of organic molecules within SOA using measurements of viscosity and the Stokes–Einstein relation (D∝1/η, where D is the diffusion coefficient and η is viscosity). However, the accuracy of this relation for predicting diffusion in SOA remains uncertain. Using rectangular area fluorescence recovery after photobleaching (rFRAP), we determined diffusion coefficients of fluorescent organic molec...
Secondary organic material (SOM) constitutes a large mass fraction of atmospheric aerosol particles....
Volatility determines the gas-particle partitioning of organic compounds. Volatility is thus a key p...
To improve predictions of air quality, visibility, and climate change, knowledge of the viscosities...
Information on the rate of diffusion of organic molecules within secondary organic aerosol (SOA) is ...
The diffusion coefficients of large and small molecules in organic-water mixtures are important to a...
Atmospheric particles play a significant role in the atmosphere and climate. To be able to better pr...
Recently, rates of molecular diffusion of organic species within organic-water particles of atmosphe...
Viscosities and diffusion rates of organics within secondary organic aerosol (SOA) remain uncertain....
Atmospheric aerosol particles influence our planet's climate and contribute to poor air quality, inc...
Viscosities and diffusion rates of organics within secondary organic aerosol (SOA) remain uncertain...
Predictions of atmospheric chemistry, air quality, and climate depend on molecular diffusion and vis...
Diffusion of organic vapours to the surface of aerosol or cloud particles is an important step for t...
Field measurements indicating that atmospheric secondary organic aerosol (SOA) particles can be pres...
Secondary organic material (SOM) constitutes a large mass fraction of atmospheric aerosol particles....
Physical properties such as phase state and the mixing times of water and organic molecules within s...
Secondary organic material (SOM) constitutes a large mass fraction of atmospheric aerosol particles....
Volatility determines the gas-particle partitioning of organic compounds. Volatility is thus a key p...
To improve predictions of air quality, visibility, and climate change, knowledge of the viscosities...
Information on the rate of diffusion of organic molecules within secondary organic aerosol (SOA) is ...
The diffusion coefficients of large and small molecules in organic-water mixtures are important to a...
Atmospheric particles play a significant role in the atmosphere and climate. To be able to better pr...
Recently, rates of molecular diffusion of organic species within organic-water particles of atmosphe...
Viscosities and diffusion rates of organics within secondary organic aerosol (SOA) remain uncertain....
Atmospheric aerosol particles influence our planet's climate and contribute to poor air quality, inc...
Viscosities and diffusion rates of organics within secondary organic aerosol (SOA) remain uncertain...
Predictions of atmospheric chemistry, air quality, and climate depend on molecular diffusion and vis...
Diffusion of organic vapours to the surface of aerosol or cloud particles is an important step for t...
Field measurements indicating that atmospheric secondary organic aerosol (SOA) particles can be pres...
Secondary organic material (SOM) constitutes a large mass fraction of atmospheric aerosol particles....
Physical properties such as phase state and the mixing times of water and organic molecules within s...
Secondary organic material (SOM) constitutes a large mass fraction of atmospheric aerosol particles....
Volatility determines the gas-particle partitioning of organic compounds. Volatility is thus a key p...
To improve predictions of air quality, visibility, and climate change, knowledge of the viscosities...