Aligning potential differences within carbon nitride based photocatalysis for efficient solar energy harvesting

Jinqiang Zhang, Yunguo Li, Xiaoli Zhao, Liang Wang, Haijun Chen, Shuaijun Wang, Xinyuan Xu, Lei Shi, Lai Chang Zhang, Yuezhao Zhu, Huayang Zhang, Yazi Liu, Gareth Nealon, Shu Zhang, Mingbo Wu, Shaobin Wang, Hongqi Sun

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53 引用 (Scopus)

摘要

Photocatalysis is essentially triggered by the photoinduced charge carriers, which are then oriented for the targeted redox reactions. However, the effects of intrinsic driving forces on charge carriers and their resulting photocatalytic throughputs remain unclear. Herein, we focus on two main potential differences (PDs), e.g., intralayer PD (IPD) within two-dimensional carbon nitride hybrids, and band PD (BPD) between the band positions of a semiconductor and the redox potentials of reactants that can actuate charge carriers for photocatalysis. In situ experiments and theoretical computations identify and differentiate the roles of the two PDs on the separation, transportation and catalytic utilization of charge carriers. It is noteworthy that the enhancement from PDs alignment in this work is higher than other physiochemical modifications (e.g., mass transfer and polymerization degree) for photocatalysis. This study may offer a guiding principle for aligning a photocatalyst with target reactions for energy conversion and chemical synthesis.

源语言英语
文章编号106357
期刊Nano Energy
89
DOI
出版状态已出版 - 11月 2021

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