Songcan Wang; Peng Chen; Yang Bai; Jung‐Ho Yun; Gang Liu; Lianzhou Wang
文献索引:10.1002/adma.201800486
全文:HTML全文
Bismuth vanadate (BiVO4) is a promising photoanode material for photoelectrochemical (PEC) water splitting. However, owing to the short carrier diffusion length, the trade‐off between sufficient light absorption and efficient charge separation often leads to poor PEC performance. Herein, a new electrodeposition process is developed to prepare bismuth oxide precursor films, which can be converted to transparent BiVO4 films with well‐controlled oxygen vacancies via a mild thermal treatment process. The optimized BiVO4 film exhibits an excellent back illumination charge separation efficiency mainly due to the presence of enriched oxygen vacancies which act as shallow donors. By loading FeOOH/NiOOH as the cocatalysts, the BiVO4 dual photoanodes exhibit a remarkable and highly stable photocurrent density of 5.87 mA cm−2 at 1.23 V versus the reversible hydrogen electrode under AM 1.5 G illumination. An artificial leaf composed of the BiVO4/FeOOH/NiOOH dual photoanodes and a single sealed perovskite solar cell delivers a solar‐to‐hydrogen conversion efficiency as high as 6.5% for unbiased water splitting.
Controlled Homoepitaxial Growth of Hybrid Perovskites
2018-04-02 [10.1002/adma.201705992] |
Phase Transition Control for High Performance Ruddlesden–Pop...
2018-04-02 [10.1002/adma.201707166] |
Few‐Layer GeAs Field‐Effect Transistors and Infrared Photode...
2018-04-02 [10.1002/adma.201705934] |
Porous Graphene Films with Unprecedented Elastomeric Scaffol...
2018-04-02 [10.1002/adma.201707025] |
Oxidized Laser‐Induced Graphene for Efficient Oxygen Electro...
2018-04-02 [10.1002/adma.201707319] |
首页 |
期刊大全 |
MSDS查询 |
化工产品分类 |
生物活性化合物 |
关于我们 |
免责声明:知识产权问题请联系 service1@chemsrc.com
Copyright © 2024 ChemSrc All Rights Reserved