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宽电位窗口下金铜单原子合金气凝胶上电化学硝酸盐还原制氨

Electrochemical Nitrate Reduction to Ammonia on AuCu Single-Atom Alloy Aerogels under Wide Potential Window.

作者信息

Yu Jidong, Gao Rui-Ting, Guo Xiaotian, Truong Nguyen Nhat, Wu Limin, Wang Lei

机构信息

College of Chemistry and Chemical Engineering, College of Energy Material and Chemistry, Inner Mongolia University, Hohhot, 010021, China.

Department of Chemical and Materials Engineering, Gina Cody School of Engineering and Computer Science, Concordia University, Montreal, QC, H3G 2W1, Canada.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202415975. doi: 10.1002/anie.202415975. Epub 2024 Nov 19.

Abstract

Electrocatalytic nitrate reduction to ammonia (NORR) is very attractive for nitrate removal and ammonia production in industrial processes. However, the nitrate reduction reaction is characterized by intense hydrogen competition at strong reduction potentials, which greatly limits the Faraday efficiency at strong reduction potentials. Herein, we reported an AuCu single-atom alloy aerogels (AuCu SAAs) with three-dimensional network structure with significant nitrate reduction performance of Faraday efficiency (FE) higher than 90 % over a wide potential range (0 ~ -1 V ). The FE of the catalyst was close to 100 % at a high reduction potential of -0.8 V, accompanying with NH yield reaching 6.21 mmol h cm. More importantly, the catalyst maintained a long-term operation over 400 h at 400 mA cm for the NORR using a continuous flow system in a H-cell. Experimental and theoretical analysis demonstrate that the catalyst can lower the energy barrier for the hydrogenation reaction of *NO, leading to a rapid consumption of the generated *H, facilitate the hydrogenation process of NORR, and inhibit the competitive HER at high overpotentials, which efficiently promotes the nitrate reduction reaction, especially in industrial applications.

摘要

电催化硝酸盐还原制氨(NORR)对于工业过程中的硝酸盐去除和氨生产极具吸引力。然而,硝酸盐还原反应的特点是在强还原电位下存在激烈的氢竞争,这极大地限制了强还原电位下的法拉第效率。在此,我们报道了一种具有三维网络结构的AuCu单原子合金气凝胶(AuCu SAAs),其在宽电位范围(0 ~ -1 V)内具有显著的硝酸盐还原性能,法拉第效率(FE)高于90%。在 -0.8 V的高还原电位下,催化剂的FE接近100%,同时NH产量达到6.21 mmol h cm。更重要的是,使用H型电池中的连续流动系统,该催化剂在400 mA cm下对NORR保持了超过400 h的长期运行。实验和理论分析表明,该催化剂可以降低NO加氢反应的能垒,导致生成的H快速消耗,促进NORR的加氢过程,并在高过电位下抑制竞争性析氢反应,从而有效地促进硝酸盐还原反应,特别是在工业应用中。

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