1999Angewandte Chemie International EditionRequires access

Calcium, Strontium, and Barium Acetylides—New Evidence for Bending in the Structures of Heavy Alkaline Earth Metal Derivatives

David C. Green, U. Englich, K. Ruhlandt‐Senge

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Abstract

An unprecedented ligand bending mode is displayed by the acetylide ligands in the first structurally characterized σ-bound organometallic strontium and barium complexes [M([18]crown-6)(CCSiPh3)2] (M=Sr, Ba). Furthermore, the observed decrease of the angle at the sp-hybridized C atom on descending Group 2 (see structures depicted) affords new information that will lead to a better understanding of the bonding in alkaline earth metal compounds.

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An unprecedented ligand bending mode is displayed by the acetylide ligands in the first structurally characterized σ-bound organometallic strontium and barium complexes [M([18]crown-6)(CCSiPh3)2] (M=Sr, Ba). Furthermore, the observed decrease of the angle at the sp-hybridized C atom on descending Group 2 (see structures depicted) affords new information that will lead to a better understanding of the bonding in alkaline earth metal compounds.

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Available abstract

An unprecedented ligand bending mode is displayed by the acetylide ligands in the first structurally characterized σ-bound organometallic strontium and barium complexes [M([18]crown-6)(CCSiPh3)2] (M=Sr, Ba). Furthermore, the observed decrease of the angle at the sp-hybridized C atom on descending Group 2 (see structures depicted) affords new information that will lead to a better understanding of the bonding in alkaline earth metal compounds.

Key concepts: Alkaline earth metal, Strontium, Barium, Acetylide, Chemistry, Metal, Calcium, Ligand (biochemistry)

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