Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes
Organosilicon compounds have attracted synthetic organic chemists because they have a potential to be used as the organometallic reagents which are stable in the air and water. As the recent transition metal-catalyzed reactions developed, catalytic reactions with organosilicon compounds have been al...
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sg-ntu-dr.10356-495082023-02-28T23:46:22Z Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes Yue, Yanni Motoki Yamane School of Physical and Mathematical Sciences DRNTU::Science::Chemistry Organosilicon compounds have attracted synthetic organic chemists because they have a potential to be used as the organometallic reagents which are stable in the air and water. As the recent transition metal-catalyzed reactions developed, catalytic reactions with organosilicon compounds have been also studied. However, most of the reported transition metal-catalyzed reactions with organosilicon compounds require the addition of at least a stoichiometric amount of fluoride salt and/or the introduction of heteroatom such as halogen or alkoxy group on the silicon atom. These activation methods are not economical because fluoride sources are expensive. Introduction of a heteroatom on the silicon atom makes the reagents unstable against hydrolysis and self-condensation. Thus synthetic organic chemists have studied on the methods to activate C–Si bonds of tetraorganosilicon compounds without adding any additional reagents. In this thesis, the author describes a novel synthetic reaction of tetraorganosilicon compounds, triorgano(vinyl)- and triorgano(acyl)silanes, catalyzed by a rhodium complex. DOCTOR OF PHILOSOPHY (SPMS) 2012-05-21T04:50:17Z 2012-05-21T04:50:17Z 2012 2012 Thesis Yue, Y. (2012). Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/49508 10.32657/10356/49508 en 152 p. application/pdf |
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DRNTU::Science::Chemistry Yue, Yanni Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes |
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Organosilicon compounds have attracted synthetic organic chemists because they have a potential to be used as the organometallic reagents which are stable in the air and water. As the recent transition metal-catalyzed reactions developed, catalytic reactions with organosilicon compounds have been also studied. However, most of the reported transition metal-catalyzed reactions with organosilicon compounds require the addition of at least a stoichiometric amount of fluoride salt and/or the introduction of heteroatom such as halogen or alkoxy group on the silicon atom. These activation methods are not economical because fluoride sources are expensive. Introduction of a heteroatom on the silicon atom makes the reagents unstable against hydrolysis and self-condensation. Thus synthetic organic chemists have studied on the methods to activate C–Si bonds of tetraorganosilicon compounds without adding any additional reagents. In this thesis, the author describes a novel synthetic reaction of tetraorganosilicon compounds, triorgano(vinyl)- and triorgano(acyl)silanes, catalyzed by a rhodium complex. |
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Motoki Yamane |
author_facet |
Motoki Yamane Yue, Yanni |
format |
Theses and Dissertations |
author |
Yue, Yanni |
author_sort |
Yue, Yanni |
title |
Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes |
title_short |
Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes |
title_full |
Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes |
title_fullStr |
Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes |
title_full_unstemmed |
Rhodium-catalyzed coupling reactions with acyl- and vinylsilanes |
title_sort |
rhodium-catalyzed coupling reactions with acyl- and vinylsilanes |
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2012 |
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https://hdl.handle.net/10356/49508 |
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