DFT study of Si/Ge conjugated systems

Though significant efforts have been extended to improve material/material design, the organic luminescent molecule containing n-conjugated aromatic system opens a new avenue for understanding the molecular modelling strategies. The molecular electronics components largely depend on n-conjugation as...

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Main Author: Sultana Bedoura
Other Authors: Wang Dongan
Format: Theses and Dissertations
Language:English
Published: 2015
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Online Access:https://hdl.handle.net/10356/64877
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-648772023-03-03T16:00:21Z DFT study of Si/Ge conjugated systems Sultana Bedoura Wang Dongan Lim Kok Hwa School of Chemical and Biomedical Engineering DRNTU::Science::Biological sciences::Molecular biology Though significant efforts have been extended to improve material/material design, the organic luminescent molecule containing n-conjugated aromatic system opens a new avenue for understanding the molecular modelling strategies. The molecular electronics components largely depend on n-conjugation as for charge transportation. An n-conjugated small molecule, formamide was primarily studied within density functional theory (DFT) framework to investigate the Si/Ge substitution effect on its inherent geometric and electronic properties. The nature of hydrogen bond in these types of molecules both at ground state and at low-lying states was also extensively explored based on electronegativity as a part of investigation of-conjugated system.Several n-conjugated systems including Si/Ge heteroatoms were then investigated substantially to get deep insight into their geometric and electronic properties, as for example, planarity, dihedral angles, potential energy surface, aromaticity, stability, hyperconjugation, and so on. lt enables someone to modify the structure or composition in search of more active molecules. We continued our OFT studies along with TD-DFT (Time-dependent density functional theory) on n-<:onjugated cyclic structures to know how heteroatoms (like Si, S or N) within conjugated backbone and extension of nconjugation length by incorporation of donor/acceptor fragments under different architectures influence electron delocalization and bring change into their inherent electronic and optical properties. This detailed study is expected to be helpful for effective design of molecular systems for optoelectronic applications. DOCTOR OF PHILOSOPHY (SCBE) 2015-06-09T02:44:02Z 2015-06-09T02:44:02Z 2014 2014 Thesis Sultana Bedoura. (2014). DFT study of Si/Ge conjugated systems. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/64877 10.32657/10356/64877 en 216 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science::Biological sciences::Molecular biology
spellingShingle DRNTU::Science::Biological sciences::Molecular biology
Sultana Bedoura
DFT study of Si/Ge conjugated systems
description Though significant efforts have been extended to improve material/material design, the organic luminescent molecule containing n-conjugated aromatic system opens a new avenue for understanding the molecular modelling strategies. The molecular electronics components largely depend on n-conjugation as for charge transportation. An n-conjugated small molecule, formamide was primarily studied within density functional theory (DFT) framework to investigate the Si/Ge substitution effect on its inherent geometric and electronic properties. The nature of hydrogen bond in these types of molecules both at ground state and at low-lying states was also extensively explored based on electronegativity as a part of investigation of-conjugated system.Several n-conjugated systems including Si/Ge heteroatoms were then investigated substantially to get deep insight into their geometric and electronic properties, as for example, planarity, dihedral angles, potential energy surface, aromaticity, stability, hyperconjugation, and so on. lt enables someone to modify the structure or composition in search of more active molecules. We continued our OFT studies along with TD-DFT (Time-dependent density functional theory) on n-<:onjugated cyclic structures to know how heteroatoms (like Si, S or N) within conjugated backbone and extension of nconjugation length by incorporation of donor/acceptor fragments under different architectures influence electron delocalization and bring change into their inherent electronic and optical properties. This detailed study is expected to be helpful for effective design of molecular systems for optoelectronic applications.
author2 Wang Dongan
author_facet Wang Dongan
Sultana Bedoura
format Theses and Dissertations
author Sultana Bedoura
author_sort Sultana Bedoura
title DFT study of Si/Ge conjugated systems
title_short DFT study of Si/Ge conjugated systems
title_full DFT study of Si/Ge conjugated systems
title_fullStr DFT study of Si/Ge conjugated systems
title_full_unstemmed DFT study of Si/Ge conjugated systems
title_sort dft study of si/ge conjugated systems
publishDate 2015
url https://hdl.handle.net/10356/64877
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