首页|用于高效制氢的双S型ZnS/ZnO/CdS异质结构光催化剂

用于高效制氢的双S型ZnS/ZnO/CdS异质结构光催化剂

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这项工作展示了一种新型具有高效光催化活性的双S型ZnS/ZnO/CdS三元异质结光催化剂.具有最佳CdS含量的样品,ZnS/ZnO/CdS-14%(ZZC14%),显示最大H2析出速率为4.1 mmol·g−1·h−1.最大光催化性能分别比相应的ZnS/CdS和ZnO/ZnS高出约2倍和13倍.在420 nm下,获得了19.8%的量子效率.此外,连续6次测试后,催化剂的结构和产氢活性保持微小的变化,表明了光催化剂的稳定性.根据理论计算和实验结果,光催化活性的显著提高归因于快速的电子转移和分离,以及双S型之间相互作用的紧密接触.这项工作强调了一种创新的方法来构建双S型光催化系统,该分解水产氢系统具有光生电荷载流子的高分离和快速迁移能力.
Double S-Scheme ZnS/ZnO/CdS Heterostructure Photocatalyst for Efficient Hydrogen Production
This work illustrates the novelty of double S-scheme ZnS/ZnO/CdS ternary heterojunction photocatalyst with efficient photocatalytic activity.The sample with optimal CdS content,ZnS/ZnO/CdS-14%(ZZC14%),displayed the maximum H2 evolution rate of 4.1 mmol·g–1·h–1.The maximum photocatalytic performance was approximately 2 and 13 times higher than their corresponding counterparts,ZnS/CdS and ZnO/ZnS,respectively.A high AQE of 19.8%under 420 nm was obtained.Additionally,the slight changes in H2 evolution activities and retentions of crystal structures after six successive cycles indicate the stability of the photocatalyst.In accordance with the theoretical calculations and experimental results,the remarkable enhancement in photocatalytic activity is attributed to fast electron transfer and separation as well as the intimate contact due to mutual interaction between S-scheme.This work highlights an innovative approach to constructing a dual S-scheme photocatalytic system with high separation and fast migration capabilities of photogenerated charge carriers for splitting water to produce hydrogen.

Double S-scheme photocatalystInternal electric fieldHydrogen evolutionTernary heterojunction

Asif Hassan Raza、Shumail Farhan、余志贤、吴艳

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中国地质大学材料科学与化学学院,武汉 430078

双S型光催化剂 内部电场 析氢 三元异质结

2024

物理化学学报
中国化学会

物理化学学报

CSTPCD北大核心
影响因子:0.951
ISSN:1000-6818
年,卷(期):2024.40(11)