Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis

The aim of this research work is to further develop the application of hypervalent silicates in highly enantioselective reactions via asymmetric ion-pairing catalysis. In this thesis, the project revealed the novel enantioselective reduction-addition strategy as an excellent synthetic methodology, a...

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Main Author: Chen, Wen Chao
Other Authors: Tan Choon Hong
Format: Thesis-Doctor of Philosophy
Language:English
Published: Nanyang Technological University 2020
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Online Access:https://hdl.handle.net/10356/138575
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spelling sg-ntu-dr.10356-1385752023-02-28T23:49:45Z Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis Chen, Wen Chao Tan Choon Hong School of Physical and Mathematical Sciences choonhong@ntu.edu.sg Science::Chemistry The aim of this research work is to further develop the application of hypervalent silicates in highly enantioselective reactions via asymmetric ion-pairing catalysis. In this thesis, the project revealed the novel enantioselective reduction-addition strategy as an excellent synthetic methodology, and the essence of chemistry was studied mechanistically. The first chapter (Chapter 1) introduced the background from two aspects, including the introduction of asymmetric ion-pairing catalysis and the application of hypervalent silicon species in stereoselective synthesis. The following chapter presented the research project utilizing our designed enantioselective reduction-addition strategy. Since the last few years, our group has developed a series of chiral quaternary ammonium phase-transfer catalysts, which were successfully applied in asymmetric phase-transfer catalysis. Meanwhile, asymmetric ion pair catalysis was put forward as a branched subject in this field. Motivated by the concept of ion-pairing, the work described in this thesis proved the potential application of the bisguanidinium silicate ion pair in asymmetric catalysis. In Chapter 2, the high enantioselective reduction-alkylation and reduction-addition of chromones and coumarins was realized through bisguanidinium silicate ion-pairing catalysis. The active hypervalent silicate intermediates were characterized by NMR spectroscopy, control experiments and supported by computational data. Chapter 3 is the detailed mechanistic study. Chapter 4 is the experimental procedures and characterization data of the chiral products. Doctor of Philosophy 2020-05-08T08:48:26Z 2020-05-08T08:48:26Z 2020 Thesis-Doctor of Philosophy Chen, W. (2020). Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/138575 10.32657/10356/138575 en This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0). application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Chemistry
spellingShingle Science::Chemistry
Chen, Wen Chao
Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis
description The aim of this research work is to further develop the application of hypervalent silicates in highly enantioselective reactions via asymmetric ion-pairing catalysis. In this thesis, the project revealed the novel enantioselective reduction-addition strategy as an excellent synthetic methodology, and the essence of chemistry was studied mechanistically. The first chapter (Chapter 1) introduced the background from two aspects, including the introduction of asymmetric ion-pairing catalysis and the application of hypervalent silicon species in stereoselective synthesis. The following chapter presented the research project utilizing our designed enantioselective reduction-addition strategy. Since the last few years, our group has developed a series of chiral quaternary ammonium phase-transfer catalysts, which were successfully applied in asymmetric phase-transfer catalysis. Meanwhile, asymmetric ion pair catalysis was put forward as a branched subject in this field. Motivated by the concept of ion-pairing, the work described in this thesis proved the potential application of the bisguanidinium silicate ion pair in asymmetric catalysis. In Chapter 2, the high enantioselective reduction-alkylation and reduction-addition of chromones and coumarins was realized through bisguanidinium silicate ion-pairing catalysis. The active hypervalent silicate intermediates were characterized by NMR spectroscopy, control experiments and supported by computational data. Chapter 3 is the detailed mechanistic study. Chapter 4 is the experimental procedures and characterization data of the chiral products.
author2 Tan Choon Hong
author_facet Tan Choon Hong
Chen, Wen Chao
format Thesis-Doctor of Philosophy
author Chen, Wen Chao
author_sort Chen, Wen Chao
title Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis
title_short Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis
title_full Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis
title_fullStr Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis
title_full_unstemmed Enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis
title_sort enantioselective addition-alkylation reactions via bisguanidinium silicate ion pair catalysis
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/138575
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