光电阴极
材料科学
光电流
溶解
分解水
贵金属
硅化物
肖特基势垒
硅
光电子学
纳米技术
化学工程
金属
催化作用
冶金
光催化
化学
电子
物理
量子力学
工程类
生物化学
二极管
作者
Haoyue Zhang,Shengyang Li,Jing Xu,Xianglie Sun,Jing Xia,Guangwei She,Jiacheng Yu,Changzhou Ru,Jun Luo,Xiangmin Meng,Lixuan Mu,Wensheng Shi
出处
期刊:Small
[Wiley]
日期:2024-03-13
卷期号:20 (32)
标识
DOI:10.1002/smll.202311738
摘要
Abstract Metal silicide/Si photoelectrodes have demonstrated significant potential for application in photoelectrochemical (PEC) water splitting to produce H 2 . To achieve an efficient and economical hydrogen evolution reaction (HER), a paramount consideration lies in attaining exceptional catalytic activity on the metal silicide surface with minimal use of noble metals. Here, this study presents the design and construction of a novel Ni 0.95 Pt 0.05 Si/p‐Si photocathode. Dopant segregation is used to achieve a Schottky barrier height as high as 1.0 eV and a high photovoltage of 420 mV. To achieve superior electrocatalytic activity for HER, a dissolution‐induced surface reconstruction (SR) strategy is proposed to in situ convert surface Ni 0.95 Pt 0.05 Si to highly active Pt 2 Si. The resulting SR Ni 0.95 Pt 0.05 Si/p‐Si photocathode exhibits excellent HER performance with an onset potential of 0.45 V (vs RHE) and a high maximum photocurrent density of 40.5 mA cm −2 and a remarkable applied bias photon‐to‐current efficiency (ABPE) of 5.3% under simulated AM 1.5 (100 mW cm −2 ) illumination. The anti‐corrosion silicide layer effectively protects Si, ensuring excellent stability of the SR Ni 0.95 Pt 0.05 Si/p‐Si photoelectrode. This study highlights the potential for achieving efficient PEC HER using bimetallic silicide/Si photocathodes with reduced Pt consumption, offering an auspicious perspective for the cost‐effective conversion of solar energy to chemical energy.
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