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无过渡金属的铃木型偶联反应:该方法的适用范围和局限性

Transition-metal-free Suzuki-type coupling reactions: scope and limitations of the methodology.

作者信息

Leadbeater Nicholas E, Marco Maria

机构信息

Department of Chemistry, King's College London, Srand, London WC2R 2LS, United Kingdom.

出版信息

J Org Chem. 2003 Jul 11;68(14):5660-7. doi: 10.1021/jo034230i.

Abstract

The scope and limitations of the transition-metal-free Suzuki-type coupling of aryl halides and arylboronic acids to form biaryls are presented. Confirmation that the reaction is indeed metal-free is presented. The effects of changing base, solvent, reaction temperature, phase-transfer catalyst, and substrate are shown and the implications of these results discussed in terms of their impact on the synthetic versatility of the methodology. The main findings are that the reaction works well for aryl bromides, water is necessary as a solvent for the reaction, the optimum temperature for the reaction is 150 degrees C, the reaction is best performed by using microwave promotion with the exception of an electron-poor aryl bromide example where conventional heating may be used, only limited boronic acids can be used as coupling partners, sodium carbonate is the best base for the reaction, tetrabutylammonium bromide proves to be the best phase-transfer catalyst for the reaction, the reaction is limited to couplings between aryl halides and aryl boronic acids with sp(2)-sp(3) couplings proving ineffective, and NaBPh(4) can be used in the place of phenylboronic acid as a phenylating agent.

摘要

介绍了芳基卤化物与芳基硼酸进行无过渡金属的铃木型偶联反应生成联芳基的反应范围和局限性。给出了该反应确实无金属的证据。展示了改变碱、溶剂、反应温度、相转移催化剂和底物的影响,并根据这些结果对该方法合成通用性的影响讨论了其意义。主要发现如下:该反应对芳基溴化物效果良好;水是反应所需的溶剂;反应的最佳温度为150℃;除了贫电子芳基溴化物的例子可采用传统加热外,该反应最好采用微波促进进行;只有有限的硼酸可作为偶联试剂;碳酸钠是该反应的最佳碱;四丁基溴化铵被证明是该反应的最佳相转移催化剂;该反应仅限于芳基卤化物与芳基硼酸之间的偶联,sp(2)-sp(3)偶联无效;并且NaBPh(4)可用作苯基硼酸的替代物作为苯基化试剂。

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