电解
法拉第效率
材料科学
产量(工程)
化学工程
催化作用
氢
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
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.
科研通智能强力驱动
Strongly Powered by AbleSci AI