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在氧化物衍生的铜双金属上对5-羟甲基糠醛进行碱性电化学增值过程中的氢化与氢解反应

Hydrogenation versus hydrogenolysis during alkaline electrochemical valorization of 5-hydroxymethylfurfural over oxide-derived Cu-bimetallics.

作者信息

Hauke Philipp, Merzdorf Thomas, Klingenhof Malte, Strasser Peter

机构信息

The Electrochemical Energy, Catalysis, and Materials Science Laboratory, Department of Chemistry, Chemical Engineering Division, Technical University Berlin, Berlin, Germany.

出版信息

Nat Commun. 2023 Aug 5;14(1):4708. doi: 10.1038/s41467-023-40463-y.

Abstract

The electrochemical conversion of 5-Hydroxymethylfurfural, especially its reduction, is an attractive green production pathway for carbonaceous e-chemicals. We demonstrate the reduction of 5-Hydroxymethylfurfural to 5-Methylfurfurylalcohol under strongly alkaline reaction environments over oxide-derived Cu bimetallic electrocatalysts. We investigate whether and how the surface catalysis of the MO phases tune the catalytic selectivity of oxide-derived Cu with respect to the 2-electron hydrogenation to 2.5-Bishydroxymethylfuran and the (2 + 2)-electron hydrogenation/hydrogenolysis to 5-Methylfurfurylalcohol. We provide evidence for a kinetic competition between the evolution of H and the 2-electron hydrogenolysis of 2.5-Bishydroxymethylfuran to 5-Methylfurfurylalcohol and discuss its mechanistic implications. Finally, we demonstrate that the ability to conduct 5-Hydroxymethylfurfural reduction to 5-Methylfurfurylalcohol in alkaline conditions over oxide-derived Cu/MO Cu foam electrodes enable an efficiently operating alkaline exchange membranes electrolyzer, in which the cathodic 5-Hydroxymethylfurfural valorization is coupled to either alkaline oxygen evolution anode or to oxidative 5-Hydroxymethylfurfural valorization.

摘要

5-羟甲基糠醛的电化学转化,尤其是其还原反应,是一种颇具吸引力的用于生产碳质电子化学品的绿色途径。我们展示了在强碱性反应环境下,通过氧化物衍生的铜基双金属电催化剂将5-羟甲基糠醛还原为5-甲基糠醇。我们研究了MO相的表面催化是否以及如何调节氧化物衍生的铜对于2-电子氢化生成2,5-双羟甲基呋喃以及(2 + 2)-电子氢化/氢解生成5-甲基糠醇的催化选择性。我们提供了H的析出与2,5-双羟甲基呋喃向5-甲基糠醇的2-电子氢解之间存在动力学竞争的证据,并讨论了其机理意义。最后,我们证明了在碱性条件下,通过氧化物衍生的Cu/MO泡沫铜电极将5-羟甲基糠醛还原为5-甲基糠醇的能力,使得碱性交换膜电解槽能够高效运行,其中阴极的5-羟甲基糠醛增值与碱性析氧阳极或氧化5-羟甲基糠醛增值相耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/808e/10404266/3f175900f6bb/41467_2023_40463_Fig1_HTML.jpg

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