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甘油:微波促进铜催化硝基苯转移氢化制苯胺的最佳氢源。

Glycerol: An Optimal Hydrogen Source for Microwave-Promoted Cu-Catalyzed Transfer Hydrogenation of Nitrobenzene to Aniline.

作者信息

Moran Maria Jesus, Martina Katia, Stefanidis Georgios D, Jordens Jeroen, Gerven Tom Van, Goovaerts Vincent, Manzoli Maela, Groffils Carlo, Cravotto Giancarlo

机构信息

Dipartimento di Scienza e Tecnologia del Farmaco, University of Turin, Turin, Italy.

Department of Chemical Engineering KU Leuven, Leuven, Belgium.

出版信息

Front Chem. 2020 Jan 29;8:34. doi: 10.3389/fchem.2020.00034. eCollection 2020.

Abstract

The search for sustainable alternatives for use in chemical synthesis and catalysis has found an ally in non-conventional energy sources and widely available green solvents. The use of glycerol, an abundant natural solvent, as an excellent "sacrificial" hydrogen source for the copper-catalyzed microwave (MW)-promoted transfer hydrogenation of nitrobenzene to aniline has been investigated in this work. Copper nanoparticles (CuNPs) were prepared in glycerol and the efficacy of the glycerol layer in mediating the interaction between the metal active sites has been examined using HRTEM analyses. Its high polarity, low vapor pressure, long relaxation time, and high acoustic impedance mean that excellent results were also obtained when the reaction media was subjected to ultrasound (US) and MW irradiation. US has been shown to play an important role in the process via its ability to enhance CuNPs dispersion, favor mechanical depassivation and increase catalytic active surface area, while MW irradiation shortened the reaction time from some hours to a few minutes. These synergistic combinations promoted the exhaustive reduction of nitrobenzene to aniline and facilitated the scale-up of the protocol for its optimized use in industrial MW reactors.

摘要

在化学合成和催化领域寻找可持续替代物的过程中,非常规能源和广泛可得的绿色溶剂成为了助力。本研究考察了使用甘油(一种丰富的天然溶剂)作为铜催化微波(MW)促进的硝基苯转移氢化制苯胺反应中优良的“牺牲性”氢源。在甘油中制备了铜纳米颗粒(CuNPs),并通过高分辨透射电子显微镜(HRTEM)分析研究了甘油层在介导金属活性位点间相互作用方面的效能。其高极性、低蒸气压、长弛豫时间和高声阻抗意味着,当反应介质受到超声(US)和MW辐照时,也能获得优异的结果。研究表明,US通过增强CuNPs分散、促进机械去钝化以及增加催化活性表面积,在该过程中发挥了重要作用,而MW辐照则将反应时间从数小时缩短至几分钟。这些协同组合促进了硝基苯彻底还原为苯胺,并推动了该方案的放大,以便在工业MW反应器中进行优化应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05f2/7000456/2defe042cf8e/fchem-08-00034-g0001.jpg

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