Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches
Ubiquitously decked on the surfaces of all cell types in nature, complex glycoconjugates play central roles in the development, cooperation, and vitality of an organism, henceforth ushering in the need to synthesize these structures. Multitudinous approaches to construct glycosidic bonds in a highly...
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sg-ntu-dr.10356-621272023-02-28T23:33:19Z Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches Le, Kim Mai Hoang Liu Xuewei School of Physical and Mathematical Sciences DRNTU::Science::Chemistry::Organic chemistry::Carbohydrates Ubiquitously decked on the surfaces of all cell types in nature, complex glycoconjugates play central roles in the development, cooperation, and vitality of an organism, henceforth ushering in the need to synthesize these structures. Multitudinous approaches to construct glycosidic bonds in a highly stereoselective or highly convergent manner for one-pot and large scale applications have steadily emerged over the last two decades. Nonetheless, the available techniques are widely diverse in strategies, thus discouraging the applications in large scale and combinatorial chemistry. An efficient and universal method to confidently prepare various glycoconjugates has not been established yet due to the fragmented state of glycosylation methods. This thesis work focuses on the development of new methodologies for O-glycosylation by converging existing concepts into novel chemical functionalities that retain the best of each individual approach but offer a more diverse and versatile toolset. Doctor of Philosophy (SPMS) 2015-01-21T06:34:58Z 2015-01-21T06:34:58Z 2014 2014 Thesis http://hdl.handle.net/10356/62127 en 155 p. application/pdf |
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DRNTU::Science::Chemistry::Organic chemistry::Carbohydrates Le, Kim Mai Hoang Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches |
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Ubiquitously decked on the surfaces of all cell types in nature, complex glycoconjugates play central roles in the development, cooperation, and vitality of an organism, henceforth ushering in the need to synthesize these structures. Multitudinous approaches to construct glycosidic bonds in a highly stereoselective or highly convergent manner for one-pot and large scale applications have steadily emerged over the last two decades. Nonetheless, the available techniques are widely diverse in strategies, thus discouraging the applications in large scale and combinatorial chemistry. An efficient and universal method to confidently prepare various glycoconjugates has not been established yet due to the fragmented state of glycosylation methods. This thesis work focuses on the development of new methodologies for O-glycosylation by converging existing concepts into novel chemical functionalities that retain the best of each individual approach but offer a more diverse and versatile toolset. |
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Liu Xuewei |
author_facet |
Liu Xuewei Le, Kim Mai Hoang |
format |
Theses and Dissertations |
author |
Le, Kim Mai Hoang |
author_sort |
Le, Kim Mai Hoang |
title |
Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches |
title_short |
Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches |
title_full |
Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches |
title_fullStr |
Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches |
title_full_unstemmed |
Strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches |
title_sort |
strategic construction of highly stereoselective glycosidic bonds : new concepts and approaches |
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2015 |
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http://hdl.handle.net/10356/62127 |
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