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Electronic response of aluminum-bearing minerals.

Authors :
Prange MP
Zhang X
Ilton ES
Kovarik L
Engelhard MH
Kerisit SN
Source :
The Journal of chemical physics [J Chem Phys] 2018 Jul 14; Vol. 149 (2), pp. 024502.
Publication Year :
2018

Abstract

Aluminum-bearing minerals show different hydrogen evolution and dissolution properties when subjected to radiation, but the complicated sequence of events following interaction with high-energy radiation is not understood. To gain insight into the possible mechanisms of hydrogen production in nanoparticulate minerals, we study the electronic response and determine the bandgap energies of three common aluminum-bearing minerals with varying hydrogen content: gibbsite (Al(OH) <subscript>3</subscript> ), boehmite (AlOOH), and alumina (Al <subscript>2</subscript> O <subscript>3</subscript> ) using electron energy loss spectroscopy, X-ray photoelectron spectroscopy, and first-principles electronic structure calculations employing hybrid density functionals. We find that the amount of hydrogen has only a small effect on the number and spectrum of photoexcitations in this class of materials. Electronic structure calculations demonstrate that low energy electrons are isotropically mobile, while holes in the valence band are likely constrained to move in layers. Furthermore, holes in the valence band of boehmite are found to be significantly more mobile than those in gibbsite, suggesting that the differences in radiolytic and dissolution behavior are related to hole transport.

Details

Language :
English
ISSN :
1089-7690
Volume :
149
Issue :
2
Database :
MEDLINE
Journal :
The Journal of chemical physics
Publication Type :
Academic Journal
Accession number :
30007383
Full Text :
https://doi.org/10.1063/1.5037104