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使用带有庞大端帽的三乙炔基膦配体来营造多孔催化环境:在金(I)催化的炔烃环化反应中的应用。

Using triethynylphosphine ligands bearing bulky end caps to create a holey catalytic environment: application to gold(I)-catalyzed alkyne cyclizations.

作者信息

Ochida Atsuko, Ito Hideto, Sawamura Masaya

机构信息

Department of Chemistry, Faculty of Science, Hokkaido University, Sapporo 060-0810, Japan.

出版信息

J Am Chem Soc. 2006 Dec 27;128(51):16486-7. doi: 10.1021/ja066800c.

Abstract

The synthesis, properties and catalytic uses of phosphinoalkynes bearing bulky end caps at the alkyne termini, that is, tris[(triarylsilyl)ethynyl]phosphines are reported. The most salient feature of the new phosphines is the holey molecular shape possessing a deep and large-scale metal-binding cavity. The holey phosphines displayed remarkable rate enhancement in the gold(I)-catalyzed six- and seven-membered ring forming cyclizations of acetylenic keto esters and 1,7-enynes. It is proposed that the cavity in the ligand forces a nucleophilic center (enol or alkene) of the acetylenic compounds close to the gold-bound alkyne, making ring-closing anti attack feasible.

摘要

报道了在炔烃末端带有庞大端基的膦基炔烃的合成、性质及催化用途,即三[(三芳基甲硅烷基)乙炔基]膦。新型膦最显著的特征是具有一个深且规模较大的金属结合腔的多孔分子形状。在金(I)催化的炔酮酯和1,7-烯炔的六元及七元环形成环化反应中,多孔膦显示出显著的速率增强。有人提出,配体中的腔迫使炔化合物的亲核中心(烯醇或烯烃)靠近与金相连的炔烃,使得闭环反式攻击成为可能。

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