Highly regio- and stereo-selective heterogeneous 1,3-diyne hydrosilylation controlled by a nickel-metalated porous organic polymer

A porous organic polymer (POL-xantphos) was synthesized and employed as a heterogeneous ligand for nickel catalyzed highly regio- and stereo-selective 1,3-diyne hydrosilylation. A broad range of unsymmetrical and symmetrical 1,3-diynes can react with primary and secondary silanes to yield the corres...

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Veröffentlicht in:Organic Chemistry Frontiers 2021-08, Vol.8 (17), p.4826-4832
Hauptverfasser: Yang, Ying, Jiang, Ya-Nan, Lin, Zhi-Yi, Zeng, Jia-Hao, Liu, Zhi-Kai, Zhan, Zhuang-Ping
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Sprache:eng
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Zusammenfassung:A porous organic polymer (POL-xantphos) was synthesized and employed as a heterogeneous ligand for nickel catalyzed highly regio- and stereo-selective 1,3-diyne hydrosilylation. A broad range of unsymmetrical and symmetrical 1,3-diynes can react with primary and secondary silanes to yield the corresponding silyl-functionalized 1,3-enynes. Owing to the confinement effect of the microporous structure, the selectivity of POL-xantphos greatly increased compared with that of the monomeric xantphos ligand. This is the first report on the use of a porous organic polymer as a regioselective and efficient heterogeneous ligand in 1,3-diyne hydrosilylation. The Earth-abundant base-metal catalyst, coordinated with a recyclable heterogeneous porous organic polymer, shows good prospects for industrial applications.
ISSN:2052-4129
2052-4110
2052-4129
2052-4110
DOI:10.1039/D1QO00547B