HR: 0830h
AN: A51F-0735 [PDF]
TI: Scanning Transmission X-ray microscopy Imaging of Aerosol Particles
AU: * Gilles, M K
EM: mkgilles@lbl.gov
AF: Chemical Sciences Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA
94720 United States
AU: Kilcoyne, A
AF: Advanced Light Source, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720 United States
AU: Tyliszczak, T
AF: Chemical Sciences Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA
94720 United States
AU: Shuh, D K
AF: Chemical Sciences Division, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA
94720 United States
AU: Fakra, S
AF: Advanced Light Source, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720 United States
AU: Robinson, M
EM: marin.robinson@nau.edu
AF: Northern Arizona University, Department of Chemistry, Box 5698, Flagstaff, AZ 86011 United States
AU: Chase, K
AF: Northern Arizona University, Department of Chemistry, Box 5698, Flagstaff, AZ 86011 United States
AB:
Scanning transmission x-ray microscopes (STXM) are used to image a diversity of carbon and metal containing items such as
biofilms in soils, magnetic materials, polymers and meteorites. Studies on particles collected on SiO2 filters from biomass
burns in Flagstaff, Arizona and individual aerosols collected in South Africa on TEM grids are underway at beamlines 5.3.2
and 11.0.2 at the Advanced Light Source of Lawrence Berkeley National Laboratory. Sub micron particles are imaged in the
transmission mode over the energy range of 280 - 1900 eV.
Spectromicroscopic studies on individual particles using near edge x-ray absorption fine structure (NEXAFS) probe multiple
species within or on the same particle. In (STXM) an X-ray beam is focused with a zone plate onto a sample and the
transmitted radiation is detected. Since the signal is obtained in the transmission mode, optically thin samples are
required. Hence, atmospheric aerosols with submicron thickness and diameter are well suited for this method. Near edge
spectra of various elements were scanned in step sizes from 0.1-0.5 eV around characteristic absorption edges, creating 2
dimensional images at each energy. While STXM images are taken with a lower spatial resolution (currently 40 nm) than
microscopies such as scanning electron microscopy, transmission electron microscopy, and atomic force microscopy, detailed
chemical information with spatial distributions, and oxidation states is obtained.
A particular focus of this work is to obtain more detailed information on the type of carbons, multiply, or singly bonded and
whether or not carbon is bonded to oxygen. The ultimate goal is discrimination between organic and black carbon within
individual aerosol particles and determining if organic carbon, black carbon, and metal species are distributed homogeneously
throughout aerosol particles. Initial scans of the samples from Flagstaff show spectral evidence of aromatic carbon, without
distinct C=O signatures. NEXAFS spectra of the boundary haze from South Africa indicate the presence of both metal (Fe in
multiple oxidation states) and carbon.
DE: 0305 Aerosols and particles (0345, 4801)
SC: Atmospheric Sciences [A]
MN: 2003 Fall Meeting