异质结
硫黄
材料科学
空位缺陷
光催化
氧化还原
光电子学
氢
偶极子
载流子
分解水
复合数
纳米技术
化学工程
六方晶系
电荷(物理)
离子
化学物理
无机化学
有效核电荷
制氢
密度泛函理论
混合功能
光催化分解水
光电化学
作者
Jiayue Liu,Xian Yan,Bo Wen,Xueying Yang,Youji Li,Xin Guo,Zhiliang Jin
标识
DOI:10.1002/adsu.202501616
摘要
ABSTRACT Rationally constructing S‐scheme heterojunctions incorporating anion vacancies offers an effective strategy for developing highly efficient photocatalysts. Herein, CoWO 4 was combined with sulfur vacancy‐engineered ZnIn 2 S 4 (ZIS‐X). Owing to its noncentrosymmetric hexagonal structure (space group P 63 mc ), ZIS‐X possesses an intrinsic dipole field, which facilitates more efficient charge separation. The hydrogen evolution rate of the optimized ZIS‐2/CoWO 4 composite is 11 times higher than that of pure ZIS‐2 and 379 times greater than that of CoWO 4 alone. Through photoelectrochemical and analytical investigations, we confirmed that the synergistic interaction between sulfur vacancies and the S‐scheme heterojunction significantly enhances charge separation and improves redox efficiency. This research introduces an innovative approach to developing high‐efficiency photocatalysts through the modulation of vacancy concentrations and the formation of heterojunction structures.
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