Oxide-supported Ir nanodendrites with high activity and durability for the oxygen evolution reaction in acid PEM water electrolyzers

被引:337
|
作者
Oh, Hyung-Suk [1 ]
Nong, Hong Nhan [1 ]
Reier, Tobias [1 ]
Gliech, Manuel [1 ]
Strasser, Peter [1 ]
机构
[1] Tech Univ Berlin, Div Chem Engn, Dept Chem, Electrochem Energy Catalysis & Mat Sci Lab, D-10623 Berlin, Germany
关键词
DOPED TIN OXIDES; CATALYST SUPPORTS; ELECTROCATALYTIC ACTIVITY; SURFACE CHARACTERIZATION; ANODIC EVOLUTION; CATHODE CATALYST; SHAPE CONTROL; CARBON-BLACK; HYDROGEN; CELL;
D O I
10.1039/c5sc00518c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Reducing the noble-metal catalyst content of acid Polymer Electrolyte Membrane (PEM) water electrolyzers without compromising catalytic activity and stability is a goal of fundamental scientific interest and substantial technical importance for cost-effective hydrogen-based energy storage. This study presents nanostructured iridium nanodendrites (Ir-ND) supported on antimony doped tin oxide (ATO) as efficient and stable water splitting catalysts for PEM electrolyzers. The active Ir-ND structures exhibited superior structural and morphological properties, such as particle size and surface area compared to commercial state-of-art Ir catalysts. Supported on tailored corrosion-stable conductive oxides, the Ir-ND catalysts exhibited a more than 2-fold larger kinetic water splitting activity compared with supported Ir nanoparticles, and a more than 8-fold larger catalytic activity than commercial Ir blacks. In single-cell PEM electrolyzer tests, the Ir-ND/ATO outperformed commercial Ir catalysts more than 2-fold at technological current densities of 1.5 A cm(-2) at a mere 1.80 V cell voltage, while showing excellent durability under constant current conditions. We conclude that Ir-ND/ATO catalysts have the potential to substantially reduce the required noble metal loading, while maintaining their catalytic performance, both in idealized three-electrode set ups and in the real electrolyzer device environments.
引用
收藏
页码:3321 / 3328
页数:8
相关论文
共 50 条
  • [31] Pt-Fe alloy supported on Fe/NC catalyst with high activity and durability for oxygen reduction reaction
    Dong, Yining
    Song, Ping
    Han, Ce
    Xu, Weilin
    Journal of Electroanalytical Chemistry, 2024, 959
  • [32] Pt-Fe alloy supported on Fe/NC catalyst with high activity and durability for oxygen reduction reaction
    Dong, Yining
    Song, Ping
    Han, Ce
    Xu, Weilin
    JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2024, 959
  • [33] Unveiling the role of catalytically active MXene supports in enhancing the performance and durability of cobalt oxygen evolution reaction catalysts for anion exchange membrane water electrolyzers
    Park, Young Sang
    Chae, Ari
    Choi, Gwan Hyun
    Ram, Swetarekha
    Lee, Seung-Cheol
    Bhattacharjee, Satadeep
    Jung, Jiyoon
    Jeon, Hyo Sang
    Ahn, Cheol-Hee
    Hwang, Seung Sang
    Koh, Dong-Yeun
    In, Insik
    Oh, Taegon
    Kim, Seon Joon
    Koo, Chong Min
    Lee, Albert S.
    APPLIED CATALYSIS B-ENVIRONMENT AND ENERGY, 2024, 346
  • [34] Porous Indium Tin Oxide-Supported NiFe LDH as a Highly Active Electrocatalyst in the Oxygen Evolution Reaction and Flexible Zinc-Air Batteries
    Xu, Jinchang
    Li, Zilong
    Chen, Di
    Yang, Sanxi
    Zheng, Kaiwei
    Ruan, Jiaxi
    Wu, Yinlong
    Zhang, Hao
    Chen, Jian
    Xie, Fangyan
    Jin, Yanshuo
    Wang, Nan
    Meng, Hui
    ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (41) : 48774 - 48783
  • [35] Systematic Study of Oxygen Evolution Reaction Activity and Stability of Sn n Sb m Nb l O x Ternary Oxide-Supported IrO2 Catalysts
    Huang, Mingcheng
    Fan, Li
    Jin, Yiqi
    Niu, Yudi
    Bai, Xiaofang
    Xu, Shaoyi
    Fan, Jiantao
    Li, Hui
    ACS APPLIED ENERGY MATERIALS, 2023, 6 (12) : 6456 - 6466
  • [36] High catalytic activity of MBenes-supported single atom catalysts for oxygen reduction and oxygen evolution reaction
    Wang, Erpeng
    Zhang, Bikun
    Zhou, Jian
    Sun, Zhimei
    APPLIED SURFACE SCIENCE, 2022, 604
  • [37] High catalytic activity of oxygen- vacancy- rich tungsten oxide nanowires supported by nitrogendoped reduced graphene oxide for the hydrogen evolution reaction
    Wondimu, Tadele Hunde
    Chen, Guan-Cheng
    Chen, Hsueh-Yu
    Kabtamu, Daniel Manaye
    Bayeh, Anteneh Wodaje
    Wang, Kai-Chin
    Huang, Hsin-Chih
    Wang, Chen-Hao
    JOURNAL OF MATERIALS CHEMISTRY A, 2018, 6 (40) : 19767 - 19774
  • [38] Increased Ir-Ir Interaction in Iridium Oxide during the Oxygen Evolution Reaction at High Potentials Probed by Operando Spectroscopy
    Czioska, Steffen
    Boubnov, Alexey
    Escalera-Lopez, Daniel
    Geppert, Janis
    Zagalskaya, Alexandra
    Roese, Philipp
    Saraci, Erisa
    Alexandrov, Vitaly
    Krewer, Ulrike
    Cherevko, Serhiy
    Grunwaldt, Jan-Dierk
    ACS CATALYSIS, 2021, 11 (15) : 10043 - 10057
  • [39] Ultrafine cobalt oxide nanosheets for enhanced high activity towards oxygen evolution reaction
    Song, Cuimeng
    Luo, Hubin
    Duan, Xuliang
    Li, Yun
    Li, Yujin
    Yang, Yinhang
    Wu, Jian
    Wang, Fang
    Meng, Fanbin
    Zhang, Jian
    CATALYSIS COMMUNICATIONS, 2022, 171
  • [40] Inhibition of water-gas shift reaction activity of oxide-supported Pt catalyst by H2 and CO2
    Lee, Jaeha
    Lee, Eunwon
    Kim, Do Heui
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (64) : 24574 - 24579