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生物基溶剂和水中的极地有机金属化学的未来。

The Future of Polar Organometallic Chemistry Written in Bio-Based Solvents and Water.

机构信息

Laboratorio de Compuestos Organometálicos y Catálisis, Departamento de Química Orgánica e Inorganica (IUQOEM), Instituto, Universitario de Química Organometálica "Enrique Moles", Facultad de Química, Universidad de Oviedo, 33071, Oviedo, Spain.

WestCHEM, Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow, G1 1XL, UK.

出版信息

Chemistry. 2018 Oct 9;24(56):14854-14863. doi: 10.1002/chem.201802873. Epub 2018 Sep 20.

Abstract

There is a strong imperative to reduce the release of volatile organic compounds (VOCs) into the environment, and many efforts are currently being made to replace conventional hazardous VOCs in favour of safe, green and bio-renewable reaction media that are not based on crude petroleum. Recent ground-breaking studies from a few laboratories worldwide have shown that both Grignard and (functionalised) organolithium reagents, traditionally handled under strict exclusion of air and humidity and in anhydrous VOCs, can smoothly promote both nucleophilic additions to unsaturated substrates and nucleophilic substitutions in water and other bio-based solvents (glycerol, deep eutectic solvents), competitively with protonolysis, at room temperature and under air. The chemistry of polar organometallics in the above protic media is a complex phenomenon influenced by several factors, and understanding its foundational character is stimulating in the perspective of the development of a sustainable organometallic chemistry.

摘要

现在强烈要求减少挥发性有机化合物(VOCs)向环境中的排放,目前正在做出许多努力,以替代常规危险 VOCs,转而采用安全、绿色和可再生的生物反应介质,这些介质不是基于原油。最近,来自全球几个实验室的突破性研究表明,格氏试剂和(功能化)有机锂试剂传统上都是在严格排除空气和湿度以及无水 VOCs 的条件下处理的,但现在可以在水和其他生物基溶剂(甘油、深共熔溶剂)中,在室温下、在空气存在的条件下,顺利地促进不饱和底物的亲核加成和亲核取代,与质子解竞争进行。在上述质子介质中,极性有机金属化合物的化学是一个复杂的现象,受多种因素影响,从可持续有机金属化学发展的角度来看,理解其基础特性是具有启发性的。

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