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教授逆合成“简单”立体化学。

Teaching metathesis "simple" stereochemistry.

机构信息

Max-Planck-Institut für Kohlenforschung, D-45470 Mülheim/Ruhr, Germany.

出版信息

Science. 2013 Sep 20;341(6152):1229713. doi: 10.1126/science.1229713.

Abstract

Applications of metal-catalyzed olefin metathesis reactions manifested dramatic growth during the late 20th and early 21st centuries, culminating in the 2005 Nobel Prize awarded to three of the pioneers. The standard catalysts developed during that time frame and their descendants have profoundly changed the mindset of the synthetic community, even though they do not provide a handle to control selectivity issues as fundamental as the E/Z geometry of the newly formed double bond. With yet another generation of catalysts in the making that are far superior in this regard, a new wave seems to be building up that is expected to have enormous impact, too. The current state of the art is critically assessed, as are possible alternatives such as the metathesis of triple bonds followed by stereoselective semi-reduction.

摘要

金属催化的烯烃复分解反应的应用在 20 世纪后期和 21 世纪初期得到了显著发展,最终三位先驱者于 2005 年获得了诺贝尔奖。在此期间开发的标准催化剂及其衍生物深刻地改变了合成界的思维模式,尽管它们不能像新形成的双键的 E/Z 几何形状这样的基本选择性问题提供控制手段。随着又一代在这方面表现出色的催化剂的出现,一股新的浪潮似乎正在形成,预计也会产生巨大的影响。本文批判性地评估了当前的艺术状态,以及其他可能的选择,如三键的复分解反应,随后进行立体选择性半还原。

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