1991Angewandte Chemie International Edition in EnglishRequires access

Metal‐Centered Coupling of Two Carbyne Ligands To Form an Alkyne Ligand

Alexander Constantin Filippou, Walter Grünleitner, Christian Völkl, Paul Kiprof

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Abstract

Bis(carbyne) complexes are discussed as key intermediates of numerous CC coupling reactions of carbyne-complexes to alkyne complexes—an experimental detection of such intermediates has now been possible in the reaction of the cationic bis(carbene) complex 1 with bromine or ethyl isocyanide, which leads to the alkyne complexes 2 and 3 (see also Highlight on p. 1119). Thus, in principle, the prerequisites under which processes such as the catalytic hydrogenation of CO proceed, are now also better understood. Counter ion = BF.

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Bis(carbyne) complexes are discussed as key intermediates of numerous CC coupling reactions of carbyne-complexes to alkyne complexes—an experimental detection of such intermediates has now been possible in the reaction of the cationic bis(carbene) complex 1 with bromine or ethyl isocyanide, which leads to the alkyne complexes 2 and 3 (see also Highlight on p. 1119). Thus, in principle, the prerequisites under which processes such as the catalytic hydrogenation of CO proceed, are now also better understood. Counter ion = BF.

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Available abstract

Bis(carbyne) complexes are discussed as key intermediates of numerous CC coupling reactions of carbyne-complexes to alkyne complexes—an experimental detection of such intermediates has now been possible in the reaction of the cationic bis(carbene) complex 1 with bromine or ethyl isocyanide, which leads to the alkyne complexes 2 and 3 (see also Highlight on p. 1119). Thus, in principle, the prerequisites under which processes such as the catalytic hydrogenation of CO proceed, are now also better understood. Counter ion = BF.

Key concepts: Carbyne, Alkyne, Isocyanide, Carbene, Cationic polymerization, Chemistry, Ligand (biochemistry), Metal

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