cris.boxmetadata.label.title
The electronic and optical properties of sodalite (Na8 Al6 Si6 O24 Cl2) from first principles
cris.boxmetadata.label.dateissued
01 browse.startsWith.months.january 2010
cris.boxmetadata.label.accesslevel
metadata only access
cris.boxmetadata.label.resourcetype
journal article
cris.boxmetadata.label.authors
CANO MAMANI, NILO FRANCISCO
Ayta W.
Watanabe S.
Universidad de Sao Paulo
cris.boxmetadata.label.abstract
This study reports the results of ab initio electronic and optical calculations for pure sodalite crystal using the linear augmented plane wave (LAPW) method within density functional theory (DFT). The calculated electronic structure revealed predominantly orbital characters of the valence band and the conduction band, and enabled us to determine the type and the value of the fundamental gap of the compound. The imaginary part of the dielectric tensor, extinction coefficient and refraction index were calculated as functions of the incident radiation wavelength. It is shown that the O 2p states and Na 3s states play the major role in optical transitions as initial and final states, respectively. The absorption spectrum is localized in the ultraviolet range between 40 and 250 nm. Furthermore, we concluded that the material does not absorb radiation in the visible range. © 2009 Elsevier Ltd. All rights reserved.
cris.boxmetadata.label.citationstartpage
195
cris.boxmetadata.label.citationendpage
197
cris.boxmetadata.label.volume
150
cris.boxmetadata.label.issue
browse.startsWith.months.april 3
cris.boxmetadata.label.language
English
cris.boxmetadata.label.ocdeknowledgeArea
Electroquímica
Óptica
cris.boxmetadata.label.subjects
cris.boxmetadata.label.doi
cris.boxmetadata.label.scopusidentifier
2-s2.0-70949089159
cris.boxmetadata.label.source
Solid State Communications
cris.boxmetadata.label.containerissn
00381098
cris.boxmetadata.label.sponsor
This work was carried out with financial support from “Fundação de Amparo à Pesquisa do Estado de São Paulo - FAPESP (Process number 2007/08008-0”.
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