Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli.

The density functional theory (DFT) has been used to solve the SchrÄodinger equation. The computer programmes have been developed which give a real advantage for solving large matrices in DFT that seem impossible to write by hand. The Amsterdam density functional (ADF) and DMol3 of Accelerys have b...

Full description

Saved in:
Bibliographic Details
Main Author: Rosli, Ahmad Nazrul
Format: Thesis
Published: 2012
Subjects:
Online Access:http://studentsrepo.um.edu.my/3486/4/1._title_page%2C_abstract%2C_content.pdf
http://studentsrepo.um.edu.my/3486/5/2._chap_1_%2D_12.pdf
http://studentsrepo.um.edu.my/3486/6/3._references.pdf
http://studentsrepo.um.edu.my/3486/7/4._appendices%2C_index.pdf
http://studentsrepo.um.edu.my/3486/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.um.stud.3486
record_format eprints
spelling my.um.stud.34862013-09-06T08:13:41Z Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli. Rosli, Ahmad Nazrul QC Physics The density functional theory (DFT) has been used to solve the SchrÄodinger equation. The computer programmes have been developed which give a real advantage for solving large matrices in DFT that seem impossible to write by hand. The Amsterdam density functional (ADF) and DMol3 of Accelerys have been used to calculate the vibrational frequencies of the atoms and molecules. The clusters of the molecules have been made for the study of glasses such as AgGeSe, AsSe, AsS, AsO, CuO, Se, FeP, FeAs, CN and graphene. These calculations are in good agreement with the experimental results. The local density approximation (LDA) and the generalized gradient approximation(GGA) both are used for solving eigen values of the SchrÄodinger equation. The double numerical and double numerical with polarized orbitals as a basis set for the wave functions are used in these calculations. The calculated frequencies have been compared with the experimentally measured Raman spectra to identify the clusters which are present in the material. This calculation is in accord with the experimentally observed Raman spectra. 2012-08-08 Thesis NonPeerReviewed application/pdf http://studentsrepo.um.edu.my/3486/4/1._title_page%2C_abstract%2C_content.pdf application/pdf http://studentsrepo.um.edu.my/3486/5/2._chap_1_%2D_12.pdf application/pdf http://studentsrepo.um.edu.my/3486/6/3._references.pdf application/pdf http://studentsrepo.um.edu.my/3486/7/4._appendices%2C_index.pdf Rosli, Ahmad Nazrul (2012) Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli. PhD thesis, University of Malaya. http://studentsrepo.um.edu.my/3486/
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Student Repository
url_provider http://studentsrepo.um.edu.my/
topic QC Physics
spellingShingle QC Physics
Rosli, Ahmad Nazrul
Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli.
description The density functional theory (DFT) has been used to solve the SchrÄodinger equation. The computer programmes have been developed which give a real advantage for solving large matrices in DFT that seem impossible to write by hand. The Amsterdam density functional (ADF) and DMol3 of Accelerys have been used to calculate the vibrational frequencies of the atoms and molecules. The clusters of the molecules have been made for the study of glasses such as AgGeSe, AsSe, AsS, AsO, CuO, Se, FeP, FeAs, CN and graphene. These calculations are in good agreement with the experimental results. The local density approximation (LDA) and the generalized gradient approximation(GGA) both are used for solving eigen values of the SchrÄodinger equation. The double numerical and double numerical with polarized orbitals as a basis set for the wave functions are used in these calculations. The calculated frequencies have been compared with the experimentally measured Raman spectra to identify the clusters which are present in the material. This calculation is in accord with the experimentally observed Raman spectra.
format Thesis
author Rosli, Ahmad Nazrul
author_facet Rosli, Ahmad Nazrul
author_sort Rosli, Ahmad Nazrul
title Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli.
title_short Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli.
title_full Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli.
title_fullStr Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli.
title_full_unstemmed Vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / Ahmad Nazrul bin Rosli.
title_sort vibrational frequencies of clusters: arsenic oxide, carbon nitride, copper oxide, selenium and related compounds with different atoms / ahmad nazrul bin rosli.
publishDate 2012
url http://studentsrepo.um.edu.my/3486/4/1._title_page%2C_abstract%2C_content.pdf
http://studentsrepo.um.edu.my/3486/5/2._chap_1_%2D_12.pdf
http://studentsrepo.um.edu.my/3486/6/3._references.pdf
http://studentsrepo.um.edu.my/3486/7/4._appendices%2C_index.pdf
http://studentsrepo.um.edu.my/3486/
_version_ 1738505573783044096
score 13.209306