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On A Class Of ABCS

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On A Class Of ABCS

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dc.contributor.author Lalgudi Ganapathy, Sridevi en_US
dc.date.accessioned 2007-08-23T01:56:04Z
dc.date.available 2007-08-23T01:56:04Z
dc.date.issued 2007-08-23T01:56:04Z
dc.date.submitted August 2005 en_US
dc.identifier.other DISS-1050 en_US
dc.identifier.uri http://hdl.handle.net/10106/106
dc.description.abstract The local density approximation to density functional theory (LDA-DFT) has been used to study the different possible relaxations and reconstructions of In-rich InSb (100) surface. Various electronic and geometric structure properties such as, bond lengths, cohesive energies, band gaps and density of states of the ideal (1x1) surface and the (2x1), (4x2) and c(8x2) reconstructed InSb surfaces are reported. Adsorptions of lithium atom as well as other halogen atoms such as chlorine, bromine and iodine on the (1x1), (2x1), (4x2) and c (8x2) InSb surfaces in the different symmetric sites, such as, top, bridge, hollow, cave, trough and also interstitial cage site have been investigated. Details of energetics of the chemisorption process, such as chemisorption energies, and also the adatom separation distances, charge distributions, energy band gaps and density of states are discussed. The changes in the InSb surfaces due to these different atomic adsorptions are analyzed. In the final phase of this study, we address the question of whether the molecular adsorption of iodine on the InSb surface is feasible. The results of molecular as well as dissociative adsorptions are reported and it was found that dissociation is favored in many of the approaches in energetics point of view. The changes in the atomic charge distributions of the InSb surface due to the I2 adsorption, both molecularly as well as dissociatively are investigated. The variations in the HOMO-LUMO gaps when the I2 molecule is adsorbed are reported with the DOS plots illustrating these changes. en_US
dc.description.sponsorship Ray, Asok en_US
dc.language.iso EN en_US
dc.publisher Physics en_US
dc.title On A Class Of ABCS en_US
dc.type M.S. en_US
dc.contributor.committeeChair Ray, Asok en_US
dc.degree.department Physics en_US
dc.degree.discipline Physics en_US
dc.degree.grantor University of Texas at Arlington en_US
dc.degree.level masters en_US
dc.degree.name M.S. en_US
dc.identifier.externalLink https://www.uta.edu/ra/real/editprofile.php?onlyview=1&pid=115
dc.identifier.externalLinkDescription Link to Research Profiles

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