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Janus heterostructure of cobalt and iron oxide as dual-functional electrocatalysts for overall water splitting
被引:0
|作者:
Xiaojie Li
Huike Zhang
Xuan Li
Qi Hu
Chen Deng
Xingxing Jiang
Hengpan Yang
Chuanxin He
机构:
[1] Shenzhen University,College of Chemistry and Environmental Engineering
[2] Shenzhen University,Institute of Microscale Optoelectronics
关键词:
Janus;
bifunctional;
electrocatalytic;
water splitting;
CoFe;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
In electrocatalytic water splitting, low-cost dual-functional catalysts can not only reduce costs but also avoid cross-contamination of cathode and anode. However, the orderly aggregation of active sites for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) into a specific catalyst is very challenging. In this study, a Co/Fe3O4 Janus heterojunction supported on carbon fiber paper (J-CoFe-CFP) is designed and successfully synthesized. Generally, Co-Fe oxides have preferable OER activity but weak HER activity. However, in J-CoFe-CFP, due to the intense and special electronic interaction of different substances (Co and Fe3O4) in the Janus heterogeneous interface, a huge number of tidy high-quality HER and OER active sites are uniformly distributed on the interface simultaneously, which endows the catalyst with both excellent HER and OER performance. In HER, the overpotential @10 mA·cm−2 (ηHER) is only 53.9 mV, and the Tafel slope is 43.7 mV·dec−1. In OER, the η is 272 mV, and the Tafel slope is 50.2 mV·dec−1, much lower than those of RuO2/CFP. In the J-CoFe-CFP‖J-CoFe-CFP two-electrode system, the required voltage is only 1.26 V at the beginning and 1.56 V@10 mA·cm−2, much lower than those of RuO2/CFP‖20% Pt/C/CFP. This work provides a Janus heterojunction pathway for bifunctional water electrolysis catalysts.
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页码:2245 / 2251
页数:6
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