Screening of transition metal oxides for electrocatalytic nitrate reduction to ammonia at large currents

被引:0
|
作者
Qiongfei Wu
Weijie Zhu
Dongxu Ma
Chao Liang
Zhoucheng Wang
Hanfeng Liang
机构
[1] Xiamen University,State Key Laboratory of Physical Chemistry of Solid Surfaces, Tan Kah Kee Innovation Laboratory, College of Chemistry and Chemical Engineering
[2] Tianjin University,College of Chemical Engineering
来源
Nano Research | 2024年 / 17卷
关键词
nitrate reduction reaction; ammonia production; transition metal oxides; Co; O;
D O I
暂无
中图分类号
学科分类号
摘要
Electrochemical nitrate reduction reaction (NO3RR) towards ammonia, as an emerging and appealing technology alternative to the energy-intensive Haber–Bosch process and inefficient nitrogen reduction reaction, has recently aroused wide concern and research. However, the current research of the NO3RR towards ammonia lacks the overall performance comparison of various electrocatalysts. Given this, we here make a comparison of 12 common transition metal oxide catalysts for the NO3RR under a high cathodic current density of 0.25 A·cm−2, wherein Co3O4 catalyst displays the highest ammonia Faradaic efficiency (85.15%) and moderate activity (ca. −0.25 V vs. reversible hydrogen electrode). Other external factors, such as nitrate concentrations in the electrolyte and applied potential ranges, have also been specifically investigated for the NO3RR.
引用
收藏
页码:3902 / 3910
页数:8
相关论文
共 50 条
  • [1] Screening of transition metal oxides for electrocatalytic nitrate reduction to ammonia at large currents
    Wu, Qiongfei
    Zhu, Weijie
    Ma, Dongxu
    Liang, Chao
    Wang, Zhoucheng
    Liang, Hanfeng
    NANO RESEARCH, 2024, 17 (05) : 3902 - 3910
  • [2] Transition metal single-atom electrocatalytic reduction catalyst for nitrate to ammonia
    Mo, Zhenlin
    Mu, Jincheng
    Liu, Baojun
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2024, 969
  • [3] Sustainable ammonia synthesis: opportunities for electrocatalytic nitrate reduction
    Jiang, Haoxuan
    Li, Tianyu
    Gao, Yuting
    Fan, Jieping
    Gan, Dingwei
    Yuan, Shuai
    Hong, Longfei
    Feng, Yue
    Sun, Jing
    Song, Qiang
    Zhang, Tianqi
    Jalili, Ali Rouhzollah
    Cullen, Patrick J.
    Zhou, Renwu
    JOURNAL OF ENERGY CHEMISTRY, 2025, 105 : 630 - 668
  • [4] Multifunctional High-Entropy Alloys and Oxides for Self-Powered Electrocatalytic Nitrate Reduction to Ammonia
    Zhang, Quan
    Qiu, Shiming
    Wang, Lehua
    Lian, Kang
    Luo, Jun
    Liu, Xijun
    CHEMISTRY-A EUROPEAN JOURNAL, 2025,
  • [5] Theoretical screening of the transition metal heteronuclear dimer anchored graphdiyne for electrocatalytic nitrogen reduction
    Ma, Dongwei
    Zeng, Zaiping
    Liu, Liangliang
    Jia, Yu
    JOURNAL OF ENERGY CHEMISTRY, 2021, 54 : 501 - 509
  • [6] Enhanced electrocatalytic nitrate reduction to ammonia on cobalt oxide nanosheets via multiscale defect modulation
    Zhao, Fenglin
    Hai, Guangtong
    Li, Xin
    Jiang, Zhouyan
    Wang, Haihui
    CHEMICAL ENGINEERING JOURNAL, 2023, 461
  • [7] Electrocatalytic nitrate reduction to ammonia: A perspective on Fe/Cu-containing catalysts
    Chen, Lili
    Hao, Yanheng
    Chu, Jianyi
    Liu, Song
    Bai, Fenghua
    Luo, Wenhao
    CHINESE JOURNAL OF CATALYSIS, 2024, 58 : 25 - 36
  • [8] Recent advances in carbon-based catalysts for electrocatalytic nitrate reduction to ammonia
    Sun, Cuilian
    Xing, Xiujing
    Li, Jin
    Xiong, Wei
    Li, Hao
    CARBON LETTERS, 2024, : 1 - 19
  • [9] In Situ Construction of Metal-Organic Frameworks as Smart Channels for the Effective Electrocatalytic Reduction of Nitrate at Ultralow Concentrations to Ammonia
    Wang, Zhichao
    Liu, Sisi
    Wang, Mengfan
    Zhang, Lifang
    Jiang, Yuzhuo
    Qian, Tao
    Xiong, Jie
    Yang, Chengtao
    Yan, Chenglin
    ACS CATALYSIS, 2023, 13 (13) : 9125 - 9135
  • [10] Electrocatalytic Reduction of Nitrate to Ammonia on Low-Cost Ultrathin CoOx Nanosheets
    Wang, Jing
    Cai, Chao
    Wang, Yian
    Yang, Xuming
    Wu, Duojie
    Zhu, Yuanmin
    Li, Menghao
    Gu, Meng
    Shao, Minhua
    ACS CATALYSIS, 2021, 11 (24) : 15135 - 15140