异质结
光催化
电场
材料科学
载流子
密度泛函理论
可见光谱
光电子学
分解水
光催化分解水
纳米技术
化学
催化作用
计算化学
物理
量子力学
生物化学
作者
Guping Zhang,Xunxun Li,Mengmeng Wang,Xueqing Li,Yaru Wang,Shuting Huang,Dongyun Chen,Najun Li,Qingfeng Xu,Hua Li,Jianmei Lu
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2022-11-19
卷期号:16 (5): 6134-6141
被引量:87
标识
DOI:10.1007/s12274-022-5096-6
摘要
Because of its importance in enhancing charge separation and transfer, built-in electric field engineering has been acknowledged as an effective technique for improving photocatalytic performance. Herein, a stable p–n heterojunction of 2D/2D (2D: two-dimensional) Co3O4/ZnIn2S4 with a strong built-in electric field is precisely constructed. The Co3O4/ZnIn2S4 heterojunction exhibits a higher visible-light photocatalytic hydrogen (H2) evolution rate than the individual components, which is primarily attributed to the synergy effect of improved light absorption, abundant active sites, short charge transport distance, and high separation efficiency of photogenerated carriers. Furthermore, the photoelectrochemical studies and density functional theory (DFT) calculation results demonstrate that the enhanced interfacial charge separation and migration induced by the generated built-in electric field are the critical reasons for the boosted photocatalytic performance. This research might pave the way for the rational design and manufacturing of 2D/2D heterojunction photocatalysts with extremely efficient photocatalytic performance for solar energy conversion.
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