硝基苯
苯胺
化学
转移加氢
产量(工程)
催化作用
偶氮苯
铜
化学选择性
光化学
组合化学
有机化学
材料科学
冶金
分子
钌
作者
María Jesús Moran,Katia Martina,Francesca Baricco,Silvia Tagliapietra,Maela Manzoli,Giancarlo Cravotto
标识
DOI:10.1002/adsc.202000127
摘要
Abstract A highly versatile and flexible copper nanoparticle (Cu(0) NPs) catalytic system has been developed for the controlled and selective transfer hydrogenation of nitroarene. Interestingly, the final catalytic product is strongly dependent on the nature of the hydrogen donor source. The yield of nitrobenzene reduction to aniline increased from 20% to an almost quantitative yield over a range of alcohols, diols and aminoalcohols. In glycerol at 130 °C aniline was isolated in 93% yield. In ethanolamine, the reaction was conveniently performed at a lower temperature (55 °C) and gave selectively substituted azobenzene (92% yield). Experimental studies provide support for a reaction pathway in which the Cu(0) NPs catalysed transfer hydrogenation of nitrobenzene to aniline proceeds via the condensation route. The high chemoselectivity of both protocols has been proved in experiments on a panel of variously substituted nitroarenes. Enabling technologies, microwaves and ultrasound, used both separately and in combination, have successfully increased the reaction rate and reaction yield. magnified image
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