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微波辅助合成:过渡金属配合物能利用这种“绿色”方法吗?

Microwave-Assisted Synthesis: Can Transition Metal Complexes Take Advantage of This "Green" Method?

机构信息

Dipartimento per lo Sviluppo Sostenibile e la Transizione Ecologica, Università del Piemonte Orientale, Piazza Sant'Eusebio 5, 13100 Vercelli, Italy.

Dipartimento di Scienze e Innovazione Tecnologica, Università del Piemonte Orientale, Viale T. Michel 11, 15121 Alessandria, Italy.

出版信息

Molecules. 2022 Jun 30;27(13):4249. doi: 10.3390/molecules27134249.

Abstract

Microwave-assisted synthesis is considered environmental-friendly and, therefore, in agreement with the principles of green chemistry. This form of energy has been employed extensively and successfully in organic synthesis also in the case of metal-catalyzed synthetic procedures. However, it has been less widely exploited in the synthesis of metal complexes. As microwave irradiation has been proving its utility as both a time-saving procedure and an alternative way to carry on tricky transformations, its use can help inorganic chemists, too. This review focuses on the use of microwave irradiation in the preparation of transition metal complexes and organometallic compounds and also includes new, unpublished results. The syntheses of the compounds are described following the group of the periodic table to which the contained metal belongs. A general overview of the results from over 150 papers points out that microwaves can be a useful synthetic tool for inorganic chemists, reducing dramatically the reaction times with respect to traditional heating. This is often accompanied by a more limited risk of decomposition of reagents or products by an increase in yield, purity, and (sometimes) selectivity. In any case, thermal control is operative, whereas nonthermal or specific microwave effects seem to be absent.

摘要

微波辅助合成被认为是环保的,因此符合绿色化学的原则。这种形式的能量已经在有机合成中得到了广泛而成功的应用,即使在金属催化的合成过程中也是如此。然而,它在金属配合物的合成中应用较少。由于微波辐射已经证明了其作为节省时间的程序和进行棘手转化的替代方法的实用性,因此它也可以帮助无机化学家。这篇综述重点介绍了微波辐射在制备过渡金属配合物和有机金属化合物中的应用,其中还包括新的、未发表的结果。根据所含金属所属的元素周期表,按照化合物的组别来描述它们的合成。对 150 多篇论文的结果进行的概述指出,微波可以成为无机化学家的一种有用的合成工具,与传统加热相比,大大缩短了反应时间。这通常伴随着试剂或产物分解风险的降低,收率、纯度和(有时)选择性的提高。在任何情况下,都可以进行热控制,而不存在非热或特定的微波效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b92/9267986/4048b9c5f8dc/molecules-27-04249-g0A1.jpg

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