Asymmetric Pulsed Electrolysis Enhances Nitrate-to-Ammonia Electroreduction via Optimizing the Local Reaction Microenvironment

电解 法拉第效率 材料科学 产量(工程) 化学工程 催化作用 无机化学 电解水 聚合物电解质膜电解 合金 可逆氢电极 氧化还原 电极 分析化学(期刊) 分解水 反应速率 制氢 电催化剂 纳米技术
作者
Yidi Wu,Weiliang Zhou,Z.Z. Chen,Ji Li,Tao Shao,Niannian Wang,Bilu Liu,Yan‐Bing He,Feiyu Kang,Lele Peng
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:18 (6): 10016-10024
标识
DOI:10.1021/acsami.5c25634
摘要

Pulsed electrolysis is widely regarded as a promising strategy for enhancing the performance of the electrocatalytic nitrate reduction reaction (NO 3 – RR). However, research on the effect of symmetric and asymmetric pulsed electrolysis on the NO 3 – RR remains elusive. Here, the CuMn alloy serves as a model catalyst to systematically investigate the impact of symmetric and asymmetric pulsed electrolysis on the performance of NO 3 – RR. A series of operando measurements and control experiments indicate that a suitable asymmetric pulsed electrolysis can optimize the local microenvironment of the NO 3 – RR, including optimizing the coverage of NO 3 –, enhancing the generation of key N-containing intermediates, and inhibiting the hydrogen evolution reaction, thereby improving the Faradaic efficiency and yield rate of NH 3 . Consequently, the Faradaic efficiency and yield rate of NH 3 for the optimal asymmetric pulsed electrolysis between a less negative potential time of 2 s and a more negative potential time of 4 s are 94.03% and 9.13 mg h –1 cm –2, respectively, which are 1.42-fold and 2.10-fold higher than those of static electrolysis. Moreover, the Faradaic efficiency of NH 3 for the optimal asymmetric pulsed electrolysis was 66.32% at a lower concentration of NO 3 – (2000 ppm), which is 1.73-fold higher than that of static electrolysis, indicating that the performance of asymmetric pulsed electrolysis is further enhanced in the lower concentration of NO 3 –, further confirming that asymmetric pulsed electrolysis is a feasible strategy to improve the performance of the NO 3 – RR.
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