Theoretical Investigations of Boron Related Materials Using DFT

In the history of Chemistry, materials chemists have developed their ideas mainly by doing experiments in laboratories. The underlying motivation for this laboratory work has generally been pure curiosity or the ambition to find a solution to a specific problem. Minor changes in the composition or s...

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Main Author: Arvidsson, Igor
Format: Doctoral Thesis
Language:English
Published: Uppsala universitet, Institutionen för materialkemi 2007
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-7889
http://nbn-resolving.de/urn:isbn:978-91-554-6895-8
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-78892013-01-08T13:04:28ZTheoretical Investigations of Boron Related Materials Using DFTengArvidsson, IgorUppsala universitet, Institutionen för materialkemiUppsala : Acta Universitatis Upsaliensis2007Inorganic chemistryboron nitridedensity functional theorychemical vapour depositionatomic layer depositionsurface reactivityadsorptionabstractioncomputational chemistryOorganisk kemiIn the history of Chemistry, materials chemists have developed their ideas mainly by doing experiments in laboratories. The underlying motivation for this laboratory work has generally been pure curiosity or the ambition to find a solution to a specific problem. Minor changes in the composition or structure of a material can cause major changes in its properties. The development of powerful computers has now opened up the possibility to calculate properties of new materials using quantum mechanical methods. The Chemistry of different boron-related materials has been evaluated in this thesis by Density Functional Theory (DFT). Cubic boron nitride (c-BN) is a most interesting material for the microelectronics and tool industry. During thin film deposition of c-BN, several problems arise which most often result in unwanted BN isomorphs. Chemical processes at the (110) and (111) surface of c-BN have been investigated in order to shed light upon some of these complex processes. Typically adsorption energies and surface reconstruction were found to differ significantly between the two surfaces. Other materials investigated are layered transition-metal diborides (MeB2). Incorporation of transition-metal atoms into elemental boron in its most fundamental structure, ά-boron, has also been investigated. The calculations on MeB2 focused on the stability of the planar compared to the puckered structure of MeB2. Stability was investigated by calculating Density of States (DOS) and bond populations. Deviations in the cell parameters from their ideal values were also considered. A separate project concerned reactivity of the TiB2(001) surface. Molecular and dissociated adsorption energies and adsorption geometries were calculated for H2, H2O and O2. It was concluded that the titanium surface was more reactive than the boron surface and that the adsorption energies were comparable to or stronger than other well known surface-active compounds like TiO2. Doctoral thesis, comprehensive summaryinfo:eu-repo/semantics/doctoralThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-7889urn:isbn:978-91-554-6895-8Digital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Science and Technology, 1651-6214 ; 309application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Inorganic chemistry
boron nitride
density functional theory
chemical vapour deposition
atomic layer deposition
surface reactivity
adsorption
abstraction
computational chemistry
Oorganisk kemi
spellingShingle Inorganic chemistry
boron nitride
density functional theory
chemical vapour deposition
atomic layer deposition
surface reactivity
adsorption
abstraction
computational chemistry
Oorganisk kemi
Arvidsson, Igor
Theoretical Investigations of Boron Related Materials Using DFT
description In the history of Chemistry, materials chemists have developed their ideas mainly by doing experiments in laboratories. The underlying motivation for this laboratory work has generally been pure curiosity or the ambition to find a solution to a specific problem. Minor changes in the composition or structure of a material can cause major changes in its properties. The development of powerful computers has now opened up the possibility to calculate properties of new materials using quantum mechanical methods. The Chemistry of different boron-related materials has been evaluated in this thesis by Density Functional Theory (DFT). Cubic boron nitride (c-BN) is a most interesting material for the microelectronics and tool industry. During thin film deposition of c-BN, several problems arise which most often result in unwanted BN isomorphs. Chemical processes at the (110) and (111) surface of c-BN have been investigated in order to shed light upon some of these complex processes. Typically adsorption energies and surface reconstruction were found to differ significantly between the two surfaces. Other materials investigated are layered transition-metal diborides (MeB2). Incorporation of transition-metal atoms into elemental boron in its most fundamental structure, ά-boron, has also been investigated. The calculations on MeB2 focused on the stability of the planar compared to the puckered structure of MeB2. Stability was investigated by calculating Density of States (DOS) and bond populations. Deviations in the cell parameters from their ideal values were also considered. A separate project concerned reactivity of the TiB2(001) surface. Molecular and dissociated adsorption energies and adsorption geometries were calculated for H2, H2O and O2. It was concluded that the titanium surface was more reactive than the boron surface and that the adsorption energies were comparable to or stronger than other well known surface-active compounds like TiO2.
author Arvidsson, Igor
author_facet Arvidsson, Igor
author_sort Arvidsson, Igor
title Theoretical Investigations of Boron Related Materials Using DFT
title_short Theoretical Investigations of Boron Related Materials Using DFT
title_full Theoretical Investigations of Boron Related Materials Using DFT
title_fullStr Theoretical Investigations of Boron Related Materials Using DFT
title_full_unstemmed Theoretical Investigations of Boron Related Materials Using DFT
title_sort theoretical investigations of boron related materials using dft
publisher Uppsala universitet, Institutionen för materialkemi
publishDate 2007
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-7889
http://nbn-resolving.de/urn:isbn:978-91-554-6895-8
work_keys_str_mv AT arvidssonigor theoreticalinvestigationsofboronrelatedmaterialsusingdft
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