同质结
纤锌矿晶体结构
材料科学
异质结
制氢
光催化
密度泛函理论
化学工程
半导体
再分配(选举)
热液循环
氢
科技与社会
纳米技术
载流子
光电子学
催化作用
电荷密度
水热合成
接受者
电场
作者
Ning Li,Yurong Wang,Yanping Qiu,Yaqi Zhang,Yangqin Gao,Lei Ge
出处
期刊:Chemsuschem
[Wiley]
日期:2026-06-01
卷期号:19 (11): e70743-e70743
被引量:1
摘要
Efficient charge separation and migration are crucial for advancing semiconductor photocatalysis. Herein, a twinned MnCdS homojunction (T‐MCS) composed of wurtzite MnCdS (WZ‐MCS) and zinc‐blende MnCdS (ZB‐MCS) was synthesized via a hydrothermal method and then coupled with NiSe 2 through an oil‐bath method to construct a homo‐heterojunction system. The internal twin boundaries in T‐MCS facilitate electron redistribution and enhance carrier transfer, while the interface coupling with NiSe 2 further promotes spatial charge separation through the heterojunction. Notably, the optimized 5 wt% NiSe 2 /T‐MCS achieves a remarkable hydrogen production rate of 5.17 mmol g −1 h −1 , which is 3.9 and 10.5 times higher than those of pristine T‐MCS (1.33 mmol g −1 h −1 ) and pure WZ‐MCS (0.49 mmol g −1 h −1 ), respectively. Density functional theory (DFT) calculations, combined with experimental analysis, demonstrate that the synergistic interaction between twin homojunction and NiSe 2 ‐based heterojunction constructs multiple internal electric fields, thereby facilitating directional charge migration and suppressing recombination, resulting in a superior photocatalytic performance of NiSe 2 /T‐MCS. This research offers a prospective strategy for designing efficient photocatalysts by integrating twinned structure engineering with a dual‐junction approach.
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