Nickel-assisted complete cleavage of CO by a silylene/siliconoid hybrid under formation of an Si&z.dbd;C enol ether bridge

Reaction of a silylene-functionalized Si 6 siliconoid with CO in the presence of catalytic quantities of a nickel(0) complex results in the complete cleavage of the CO triple bond, but preserves the Si 6 scaffold with an exohedrally incorporated Si&z.dbd;C enol ether bridge. The uncompromised cl...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2020-09, Vol.56 (74), p.1898-191
Hauptverfasser: Poitiers, Nadine E, Huch, Volker, Zimmer, Michael, Scheschkewitz, David
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container_issue 74
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container_title Chemical communications (Cambridge, England)
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creator Poitiers, Nadine E
Huch, Volker
Zimmer, Michael
Scheschkewitz, David
description Reaction of a silylene-functionalized Si 6 siliconoid with CO in the presence of catalytic quantities of a nickel(0) complex results in the complete cleavage of the CO triple bond, but preserves the Si 6 scaffold with an exohedrally incorporated Si&z.dbd;C enol ether bridge. The uncompromised cluster core emphasizes the role of the so-called benzpolarene motif as the energetic silicon pendants of benzene in carbon chemistry. A silylene-siliconoid hybrid incorporates CO to form a Si&z.dbd;C enol ether bridge in the presence of Ni(cod) 2 ( = silicon).
doi_str_mv 10.1039/d0cc04922k
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
title Nickel-assisted complete cleavage of CO by a silylene/siliconoid hybrid under formation of an Si&z.dbd;C enol ether bridge
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