Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity

Molecules containing sulfur-nitrogen bonds, such as sulfonamides, have long been of interest due to their many uses and chemical properties, including the potential release of nitric oxide and nitroxyl. Understanding the factors that cause sulfonamide reactivity is crucial, yet their inherent electr...

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Main Author: Okbinoğlu, Tülin Nesime
Language:English
Published: University of British Columbia 2014
Online Access:http://hdl.handle.net/2429/50408
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-504082018-01-05T17:27:40Z Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity Okbinoğlu, Tülin Nesime Molecules containing sulfur-nitrogen bonds, such as sulfonamides, have long been of interest due to their many uses and chemical properties, including the potential release of nitric oxide and nitroxyl. Understanding the factors that cause sulfonamide reactivity is crucial, yet their inherent electronic complex- ity have made them difficult to examine. In this thesis, sulfur K-edge x-ray absorption spectroscopy (XAS) is used in conjunction with density functional theory (DFT) to determine the role of electronic transmission effects through the sulfur-nitrogen bond. A systematic deconstruction of the elements within the sulfonamide moiety is used as an approach to understand critical factors that dictate electronic structure. First, the effect of oxidation state changes and variations in R-group in sulfenamides, sulfinamides and sulfonamides on intramolecular bonding are explored. Next, N-hydroxylation of the sulfonamide amide, in both alkyl sulfonamides and a series of para-substituted aryl sulfonamides with varying Hammett para-sigma constants are studied using structure-function relationships, in conjunction with DFT, to understand the role of electron donation and withdrawal to the sulfonamide moiety. The outcome of these modifications on the sulfonamide framework lead to better insight towards directed drug design and its influence on nitroxyl and nitric oxide release. Science, Faculty of Chemistry, Department of Graduate 2014-09-19T21:01:12Z 2014-09-19T21:01:12Z 2014 2014-11 Text Thesis/Dissertation http://hdl.handle.net/2429/50408 eng Attribution-NonCommercial-NoDerivs 2.5 Canada http://creativecommons.org/licenses/by-nc-nd/2.5/ca/ University of British Columbia
collection NDLTD
language English
sources NDLTD
description Molecules containing sulfur-nitrogen bonds, such as sulfonamides, have long been of interest due to their many uses and chemical properties, including the potential release of nitric oxide and nitroxyl. Understanding the factors that cause sulfonamide reactivity is crucial, yet their inherent electronic complex- ity have made them difficult to examine. In this thesis, sulfur K-edge x-ray absorption spectroscopy (XAS) is used in conjunction with density functional theory (DFT) to determine the role of electronic transmission effects through the sulfur-nitrogen bond. A systematic deconstruction of the elements within the sulfonamide moiety is used as an approach to understand critical factors that dictate electronic structure. First, the effect of oxidation state changes and variations in R-group in sulfenamides, sulfinamides and sulfonamides on intramolecular bonding are explored. Next, N-hydroxylation of the sulfonamide amide, in both alkyl sulfonamides and a series of para-substituted aryl sulfonamides with varying Hammett para-sigma constants are studied using structure-function relationships, in conjunction with DFT, to understand the role of electron donation and withdrawal to the sulfonamide moiety. The outcome of these modifications on the sulfonamide framework lead to better insight towards directed drug design and its influence on nitroxyl and nitric oxide release. === Science, Faculty of === Chemistry, Department of === Graduate
author Okbinoğlu, Tülin Nesime
spellingShingle Okbinoğlu, Tülin Nesime
Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity
author_facet Okbinoğlu, Tülin Nesime
author_sort Okbinoğlu, Tülin Nesime
title Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity
title_short Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity
title_full Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity
title_fullStr Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity
title_full_unstemmed Electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity
title_sort electronic structure of sulfur-nitrogen containing compounds : correlations with theory and chemical reactivity
publisher University of British Columbia
publishDate 2014
url http://hdl.handle.net/2429/50408
work_keys_str_mv AT okbinoglutulinnesime electronicstructureofsulfurnitrogencontainingcompoundscorrelationswiththeoryandchemicalreactivity
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