Chemical analysis of atmospheric aerosols is an analytical challenge, as aerosol particles are complex chemical mixtures that can contain hundreds to thousands of species in attoliter volumes at the most abundant sizes in the atmosphere (∼100 nm). These particles have global impacts on climate and health, but there are few methods available that combine imaging and the detailed molecular information from vibrational spectroscopy for individual particles <500 nm. Herein, we show the first application of atomic force microscopy with infrared spectroscopy (AFM-IR) to detect trace organic and inorganic species and probe intraparticle chemical variation in individual particles down to 150 nm. By detecting photothermal expansion at frequencies wh...
This research was made possible by a grant from the National Science Foundation (NSF ATM93-03058).Au...
In the environment, aerosol particles can affect climate directly though scattering and absorbing ra...
Information on the phase, shape, and architecture of pure SF6 and mixed SF6 /CO2 aerosol particles i...
The aerosol direct effect, which characterizes the interaction of radiation with aerosol particles, ...
Atomic force microscopy-based infrared spectroscopy (AFM-IR) is a rapidly emerging technique that pr...
Atomic Force Microscopy-Infrared Spectroscopy (AFM-IR) is a novel combinatory technique, enabling si...
Atmospheric aerosols affect both global and regional climate by altering the radiative balance of th...
A method is developed for obtaining the molecular composition of a single suspended microparticle by...
International audienceIntroduction: The chemical composition of organic matter (OM) in interplanetar...
Atomic force microscopy (AFM) was used to determine the shape of fine and ultrafine ambient aerosol ...
The molecular spectroscopy of a solution particle by structure resonance modulation spectroscopy is ...
Among the analytical technique developed so far for atmospheric aerosol characterization, Fourier Tr...
$^{1}$ A. J. Campillo et al., Optics Letters, 5, 424, (1980).Author Institution:With increasing conc...
KEY WORDS atmospheric aerosols; atomic force microscopy; scanning electron microscopy; energy disper...
Nanoscale topological imaging using atomic force microscopy (AFM) combined with infrared (IR) spectr...
This research was made possible by a grant from the National Science Foundation (NSF ATM93-03058).Au...
In the environment, aerosol particles can affect climate directly though scattering and absorbing ra...
Information on the phase, shape, and architecture of pure SF6 and mixed SF6 /CO2 aerosol particles i...
The aerosol direct effect, which characterizes the interaction of radiation with aerosol particles, ...
Atomic force microscopy-based infrared spectroscopy (AFM-IR) is a rapidly emerging technique that pr...
Atomic Force Microscopy-Infrared Spectroscopy (AFM-IR) is a novel combinatory technique, enabling si...
Atmospheric aerosols affect both global and regional climate by altering the radiative balance of th...
A method is developed for obtaining the molecular composition of a single suspended microparticle by...
International audienceIntroduction: The chemical composition of organic matter (OM) in interplanetar...
Atomic force microscopy (AFM) was used to determine the shape of fine and ultrafine ambient aerosol ...
The molecular spectroscopy of a solution particle by structure resonance modulation spectroscopy is ...
Among the analytical technique developed so far for atmospheric aerosol characterization, Fourier Tr...
$^{1}$ A. J. Campillo et al., Optics Letters, 5, 424, (1980).Author Institution:With increasing conc...
KEY WORDS atmospheric aerosols; atomic force microscopy; scanning electron microscopy; energy disper...
Nanoscale topological imaging using atomic force microscopy (AFM) combined with infrared (IR) spectr...
This research was made possible by a grant from the National Science Foundation (NSF ATM93-03058).Au...
In the environment, aerosol particles can affect climate directly though scattering and absorbing ra...
Information on the phase, shape, and architecture of pure SF6 and mixed SF6 /CO2 aerosol particles i...