16
IRUS TotalDownloads
Altmetric
Defect chemistry of Ti and Fe impurities and aggregates in Al2O3
File | Description | Size | Format | |
---|---|---|---|---|
c3ta15322c.pdf | Published version | 632.57 kB | Adobe PDF | View/Open |
Title: | Defect chemistry of Ti and Fe impurities and aggregates in Al2O3 |
Authors: | Bristow, JK Tiana, D Parker, SC Walsh, A |
Item Type: | Journal Article |
Abstract: | We report a theoretical evaluation of the properties of iron and titanium impurities in sapphire (corundum structured α-Al2O3). Calculations using analytical force fields have been performed on the defect structure with the metals present in isolated, co-doped and tri-cluster configurations. Crystal field parameters have been calculated with good agreement to available experimental data. When titanium and iron are present in neighbouring face and edge-sharing orientations, the overlap of the d-orbitals facilitates an intervalence charge transfer (FeIII/TiIII → FeII/TiIV) with an associated optical excitation energy of 1.85 eV and 1.76 eV in the respective configurations. Electronic structure calculations based on density functional theory confirm that FeIII/TiIII is the ground-state configuration for the nearest-neighbour pairs, in contrast to the often considered FeII/TiIV pair. Homonuclear intervalence charge transfer energies between both FeIII/FeII and TiIV/TiIII species have also been calculated, with the energy lying in the infra-red region. Investigation of multiple tri-clusters of iron and titanium identified one stable configuration, TiIII–(TiIV/FeII), with the energy of electron transfer remaining unchanged. |
Issue Date: | 5-Feb-2014 |
Date of Acceptance: | 5-Feb-2014 |
URI: | http://hdl.handle.net/10044/1/41589 |
DOI: | http://dx.doi.org/10.1039/c3ta15322c |
ISSN: | 2050-7496 |
Publisher: | Royal Society of Chemistry |
Start Page: | 6198 |
End Page: | 6208 |
Journal / Book Title: | Journal of Materials Chemistry A |
Volume: | 2 |
Issue: | 17 |
Copyright Statement: | This article is licensed under a Creative Commons Attribution 3.0 Unported Licence. |
Keywords: | Science & Technology Physical Sciences Technology Chemistry, Physical Energy & Fuels Materials Science, Multidisciplinary Chemistry Materials Science GENERALIZED GRADIENT APPROXIMATION TRANSITION-METAL IONS CHARGE-TRANSFER BAND SAPPHIRE THIN-FILMS DOPED SAPPHIRE 1ST-PRINCIPLES CALCULATIONS ELECTRON LOCALIZATION POLYCRYSTALLINE AL2O3 OPTICAL-SPECTRA BLUE SAPPHIRE |
Publication Status: | Published |
Appears in Collections: | Materials Faculty of Engineering |