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通过对用于胺选择性电氧化为腈并耦合产氢的CuO催化剂进行缺陷工程来促进OH*吸附。

Promoting OH* adsorption by defect engineering of CuO catalysts for selective electro-oxidation of amines to nitriles coupled with hydrogen production.

作者信息

Yang Xu, Wei Enhui, Dong Yuan, Fan Yu, Gao Hongtao, Luo Xiliang, Yang Wenlong

机构信息

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, MOE, Key Laboratory of Analytical Chemistry for Life Science in Universities of Shandong, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology Qingdao 266042 P. R. China

出版信息

Chem Sci. 2024 Jul 1;15(31):12580-12588. doi: 10.1039/d4sc01571a. eCollection 2024 Aug 7.

Abstract

Developing a high-efficiency benzylamine oxidation reaction (BOR) to replace the sluggish oxygen evolution reaction (OER) is an attractive pathway to promote H production and concurrently realize organic conversion. However, the electrochemical BOR performance is still far from satisfactory. Herein, we present a self-supported CuO nanorod array with abundant oxygen vacancies on copper foam (V-rich CuO/CF) as a promising anode for selective electro-oxidation of benzylamine (BA) to benzonitrile (BN) coupled with cathodic H generation. infrared spectroscopy demonstrates the selective conversion of BA into BN on V-rich CuO. Furthermore, Raman spectroscopy discloses a direct electro-oxidation mechanism of BA driven by electroactive hydroxyl species (OH*) over the V-rich CuO catalyst. Theoretical and experimental studies verify that the presence of oxygen vacancies is more favorable for the adsorption of OH* and BA molecules, enabling accelerated kinetics for the BOR. As expected, the V-rich CuO/CF electrode delivers outstanding BOR activity and stability, giving a high faradaic efficiency (FE) of over 93% for BN production at a potential of 0.40 V Ag/AgCl. Impressively, almost 100% FE for H production can be further achieved at the NiSe cathode by integrating BA oxidation in a two-electrode electrolyzer.

摘要

开发一种高效的苄胺氧化反应(BOR)以取代缓慢的析氧反应(OER)是促进氢气生成并同时实现有机转化的一条有吸引力的途径。然而,电化学BOR性能仍远不能令人满意。在此,我们展示了一种在泡沫铜上具有丰富氧空位的自支撑CuO纳米棒阵列(富V的CuO/CF),作为一种有前景的阳极,用于将苄胺(BA)选择性电氧化为苯甲腈(BN)并同时在阴极产生氢气。红外光谱表明在富V的CuO上BA选择性转化为BN。此外,拉曼光谱揭示了在富V的CuO催化剂上由电活性羟基物种(OH*)驱动的BA直接电氧化机理。理论和实验研究证实,氧空位的存在更有利于OH*和BA分子的吸附,从而加快了BOR的动力学。正如预期的那样,富V的CuO/CF电极具有出色的BOR活性和稳定性,在0.40 V(相对于Ag/AgCl)的电位下,苯甲腈生产的法拉第效率(FE)高达93%以上。令人印象深刻的是,通过在两电极电解槽中整合BA氧化,在NiSe阴极上氢气生成的FE几乎可以进一步达到100%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8bd/11304779/4b1a8db9a601/d4sc01571a-f1.jpg

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