过电位
催化作用
电催化剂
溶解
析氧
分解水
电解水
铂金
钴
无机化学
氧气
电解
化学
碱性水电解
氢
材料科学
电化学
电极
物理化学
生物化学
有机化学
电解质
光催化
作者
Yunqi Liu,Zhonglong Zhao,Fan Lv,Zhonghong Xia,Shiyu Lu,Jiong Li,Kaian Sun,Kai Wang,Yingjun Sun,Qizheng Huang,Yan Chen,Qinghua Zhang,Lin Gu,Gang Lü,Shaojun Guo
标识
DOI:10.1038/s41467-022-31406-0
摘要
Abstract As the most well-known electrocatalyst for cathodic hydrogen evolution in water splitting electrolyzers, platinum is unfortunately inefficient for anodic oxygen evolution due to its over-binding with oxygen species and excessive dissolution in oxidative environment. Herein we show that single Pt atoms dispersed in cobalt hydrogen phosphate with an unique Pt(OH)(O 3 )/Co(P) coordination can achieve remarkable catalytic activity and stability for oxygen evolution. The catalyst yields a high turnover frequency (35.1 ± 5.2 s −1 ) and mass activity (69.5 ± 10.3 A mg −1 ) at an overpotential of 300 mV and excellent stability. Mechanistic studies elucidate that the superior catalytic performance of isolated Pt atoms herein stems from optimal binding energies of oxygen intermediate and also their strong electronic coupling with neighboring Co atoms that suppresses the formation of soluble Pt x >4 species. Alkaline water electrolyzers assembled with an ultralow Pt loading realizes an industrial-level current density of 1 A cm −2 at 1.8 volts with a high durability.
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