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微波在有机磷化学中作为“共催化剂”或催化剂替代品。

Microwaves as "Co-Catalysts" or as Substitute for Catalysts in Organophosphorus Chemistry.

机构信息

Department of Organic Chemistry and Technology, Budapest University of Technology and Economics, 1521 Budapest, Hungary.

出版信息

Molecules. 2021 Feb 23;26(4):1196. doi: 10.3390/molecules26041196.

Abstract

The purpose of this review is to summarize the importance of microwave (MW) irradiation as a kind of catalyst in organophosphorus chemistry. Slow or reluctant reactions, such as the Diels-Alder cycloaddition or an inverse-Wittig type reaction, may be performed efficiently under MW irradiation. The direct esterification of phosphinic and phosphonic acids, which is practically impossible on conventional heating, may be realized under MW conditions. Ionic liquid additives may promote further esterifications. The opposite reaction, the hydrolysis of P-esters, has also relevance among the MW-assisted transformations. A typical case is when the catalysts are substituted by MWs, which is exemplified by the reduction of phosphine oxides, and by the Kabachnik-Fields condensation affording α-aminophosphonic derivatives. Finally, the Hirao P-C coupling reaction may serve as an example, when the catalyst may be simplified under MW conditions. All of the examples discussed fulfill the expectations of green chemistry.

摘要

本次综述的目的在于总结微波(MW)辐射作为一种催化剂在有机磷化学中的重要性。在 MW 辐射下,Diels-Alder 环加成或逆 Wittig 型反应等缓慢或难以进行的反应可以高效地进行。在常规加热条件下实际上不可能实现的膦酸和次膦酸的直接酯化反应,在 MW 条件下可以实现。离子液体添加剂可以促进进一步的酯化反应。MW 辅助转化中也涉及到相反的反应,即 P-酯的水解。一个典型的例子是当催化剂被 MW 取代时,例如氧化膦的还原,以及 Kabachnik-Fields 缩合生成α-氨基膦酸衍生物。最后,当催化剂在 MW 条件下可以简化时,Hirao P-C 偶联反应可以作为一个例子。所讨论的所有实例都符合绿色化学的期望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81ee/7926777/88468926aa24/molecules-26-01196-sch001.jpg

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