光催化
纳米棒
制氢
材料科学
化学工程
氢
纳米技术
催化作用
化学
有机化学
工程类
作者
Huajuan Ren,Kun Ye,Haoyu Chen,Feiyu Wang,Yuting Hu,Qiaofang Shi,Haiyan Yu,Rongguan Lv,Ming Chen
标识
DOI:10.1016/j.colsurfa.2022.129844
摘要
The noble-metal-free semiconductor photocatalysts for effective H2 production from H2O splitting under simulated sunlight has been interested greatly by researchers at present. In this work, a novel [email protected] core–shell nanorods with ZnO core of different thickness were synthesized firstly through partial vulcanization. The [email protected] (1:1) material exhibited the best photocatalytic performances with hydrogen production rates of 2.4 mmol g−1 h−1, approximately 12.6, 3.3 and 1.5 times higher than those of ZnO, [email protected] (1:0.5) and [email protected] (1:1.5), respectively. Additionally, the corresponding apparent quantum efficiency (AQE) of the optimal material achieved 2.58% under simulated sunlight. The significantly improved photocatalytic hydrogen evolution performance can be attributed to two main reasons: the distinctive internal structure of ZnO core, the homologous heterogeneous interface between ZnS and ZnO. The former factor realizes light absorption to trigger the photocatalytic reaction, and the latter one greatly improves the separation and migration rate of photogenerated carriers.
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