分解水
异质结
材料科学
量子点
光电阴极
纳米技术
氧化物
表面工程
配体(生物化学)
光电子学
光催化
化学
电子
物理
量子力学
生物化学
催化作用
受体
冶金
作者
Mengke Cai,Xin Tong,Hongyang Zhao,Xin Li,Yimin You,Rui Wang,Xia Li,Nan Zhou,Lianzhou Wang,Zhiming Wang
出处
期刊:Small
[Wiley]
日期:2022-09-23
卷期号:18 (46)
被引量:21
标识
DOI:10.1002/smll.202204495
摘要
A cost-effective and high-efficiency photoelectrochemical (PEC) water splitting system based on colloidal quantum dots (QDs) represents a potential solar-to-hydrogen (STH) conversion technology to achieve future carbon neutrality. Herein, a self-biased PEC cell consisting of BiVO4 photoanode and Cu2 O photocathode both decorated with Zn-doped CuInS2 (ZCIS) QDs is successfully fabricated. The intrinsic charge dynamics of the photoelectrodes are efficiently optimized via rational engineering of the surface ligands capped on QDs with controllable chain lengths and binding affinities to the metal oxide electrodes. It is demonstrated that the short-chain monodentate 1-dodecanethiol ligands are beneficial to ZCIS QDs for suppressing charge recombination, which enables the construction of tight heterojunction with coupled metal oxide electrodes, leading to effective photo-induced charge transfer/injection for enhanced PEC performance. The QD decorated BiVO4 and Cu2 O photoelectrodes in pairs demonstrate a self-biased PEC water splitting process, delivering an STH efficiency of 0.65% with excellent stability under AM 1.5 G one-sun illumination. The results highlight the significance of synergistic ligand and heterojunction engineering to build highly efficient and robust QDs-based PEC devices for self-biased solar water splitting.
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