Atmospheric nucleation is the dominant source of aerosol particles in the global atmosphere and an important player in aerosol climatic effects. The key steps of this process occur in the sub-2-nanometer (nm) size range, in which direct size-segregated observations have not been possible until very recently. Here, we present detailed observations of atmospheric nanoparticles and clusters down to 1-nm mobility diameter. We identified three separate size regimes below 2-nm diameter that build up a physically, chemically, and dynamically consistent framework on atmospheric nucleation - more specifically, aerosol formation via neutral pathways. Our findings emphasize the important role of organic compounds in atmospheric aerosol formation, subs...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
The detailed mechanism of secondary new particle formation in the atmosphere is still under debate. ...
Atmospheric nucleation is the dominant source of aerosol particles in the global atmosphere and an i...
New particle formation (NPF) in the atmospheric is a two-step process: Nucleation leads to the birth...
It is known that new particles formed by nucleation are observed in the atmospheric on about 20 % of...
Johnston, Murray V., IIIAtmospheric nanoparticles are suspended particulate matter with diameters of...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
New particle formation (NPF) represents the first step in the complex processes leading to formation...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
The detailed mechanism of secondary new particle formation in the atmosphere is still under debate. ...
Atmospheric nucleation is the dominant source of aerosol particles in the global atmosphere and an i...
New particle formation (NPF) in the atmospheric is a two-step process: Nucleation leads to the birth...
It is known that new particles formed by nucleation are observed in the atmospheric on about 20 % of...
Johnston, Murray V., IIIAtmospheric nanoparticles are suspended particulate matter with diameters of...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
New particle formation (NPF) represents the first step in the complex processes leading to formation...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
Nucleation and growth of aerosol particles from atmospheric vapors constitutes a major source of glo...
The detailed mechanism of secondary new particle formation in the atmosphere is still under debate. ...