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用于高效太阳能驱动水分解的镍铁双金属有机框架接枝富氧空位的BiVO光阳极

NiFe-bimetal-organic framework grafting oxygen-vacancy-rich BiVO photoanode for highly efficient solar-driven water splitting.

作者信息

Yang Yan, Wan Shipeng, Wang Ruonan, Ou Man, Fan Xiao, Zhong Qin

机构信息

School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, PR China.

School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, PR China; Department of Chemical and Biomolecular Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 120-749, Republic of Korea.

出版信息

J Colloid Interface Sci. 2023 Jan;629(Pt A):487-495. doi: 10.1016/j.jcis.2022.08.182. Epub 2022 Sep 6.

Abstract

Bismuth vanadate (BVO) possesses great potential in photoelectrochemical water splitting application, but still suffers from low charge transfer efficiency as well as poor chemical stability. Herein, we have fabricated a thin NiFe-bimetal-organic framework (NiFe-MOF) layer grafting surface oxygen vacancies enriched BVO photoanode (NiFe-O-BVO), which improves the charge separation and transfer efficiency during oxygen evolution process. Meanwhile, the NiFe-MOFs thin layer can not only protect the surface O of BVO, but also efficiently inhibits the photocorrosion. As a result, the resultant NiFe-O-BVO exhibits good chemical stability and achieves an outstanding photocurrent density of 4.42 ± 0.1 mA·cm at 1.23 V vs reversible hydrogen electrode (RHE), which is 3.7-time higher than that of BVO photoanode. This work supplies an efficient avenue to design photoanode with enhanced photocurrent and stability by using a thin NiFe-MOF layer grafting O-BVO.

摘要

钒酸铋(BVO)在光电化学水分解应用中具有巨大潜力,但仍存在电荷转移效率低以及化学稳定性差的问题。在此,我们制备了一种薄的镍铁双金属有机框架(NiFe-MOF)层接枝表面富含氧空位的BVO光阳极(NiFe-O-BVO),这提高了析氧过程中的电荷分离和转移效率。同时,NiFe-MOFs薄层不仅可以保护BVO的表面O,还能有效抑制光腐蚀。结果,所得的NiFe-O-BVO表现出良好的化学稳定性,在相对于可逆氢电极(RHE)为1.23 V时实现了4.42±0.1 mA·cm的出色光电流密度,这比BVO光阳极高3.7倍。这项工作提供了一条通过使用薄的NiFe-MOF层接枝O-BVO来设计具有增强光电流和稳定性的光阳极的有效途径。

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