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Facet-selective charge separation in two-dimensional bismuth-based photocatalysts

机译:Facet-selective电荷分离的二维bismuth-based催化剂

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Facet-selective charge separation in semiconductors has been considered one of the most vital factors to improve their photocatalytic performance and selectivity, which is ascribed to the suppressed charge recombination and separated redox active sites among facets. In this review, we summarize the recent advances in the facet design of two-dimensional bismuth-based semiconductors, which is mainly based on the facet-dependent charge carrier migration to expose the relevant active crystal facets for specific photocatalytic reactions. The review starts with some typical bismuth-based single-crystal plates, and the control of their specific exposed facets is introduced. We then discuss the facet-dependent charge separation and photocatalytic applications of bismuth-based single-crystal plates, in which the highly exposed facets and co-exposed facets are summarized. In particular, pH regulation and introduction of piezoelectric or ferroelectric polarization, emerging as promising and efficient strategies for manipulating the facet-selective charge separation in photocatalysts, are highlighted. Finally, future prospects for developing high-performance photocatalysts with efficient charge separation and surface reaction kinetics are proposed.
机译:Facet-selective电荷分离的半导体被认为是其中一个改善他们的最重要的因素光催化性能和选择性是归因于抑制电荷重组和分离氧化还原活性的网站在方面。设计方面的最新进展二维bismuth-based半导体,主要是基于facet-dependent吗电荷载体迁移暴露有关为特定的光催化活性晶体方面反应。bismuth-based单晶片,控制他们的特定暴露方面介绍了。电荷分离和光催化应用bismuth-based单晶片,高度暴露方面和co-exposed方面进行了总结。引入压电和铁电极化,成为有前途的和有效的策略操纵facet-selective在论文的电荷分离突出显示。发展高性能催化剂,有效的电荷分离和表面反应提出了动力学。

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