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暴露晶面对BiVO光催化水分解反应材料性能的显著影响。

Significant Impact of Exposed Facets on the BiVO Material Performance for Photocatalytic Water Splitting Reactions.

作者信息

Lardhi Sheikha, Cavallo Luigi, Harb Moussab

机构信息

KAUST Catalysis Center, Physical Sciences and Engineering Division, King Abdullah University of Science and Technology (KAUST), 4700 KAUST, Thuwal 23955-6900, Saudi Arabia (KSA).

出版信息

J Phys Chem Lett. 2020 Jul 16;11(14):5497-5503. doi: 10.1021/acs.jpclett.0c01234. Epub 2020 Jun 27.

Abstract

The impact of the four predominant (010), (110), (001), and (121) exposed facets obtained experimentally for monoclinic BiVO on its photocatalytic performance for water splitting reactions is investigated on the basis of the hybrid density functional theory including the spin-orbit coupling. Although their electronic structure is similar, their transport and redox properties reveal anisotropic characters based on the crystal orientation and termination. The particular role of each facet in proton reduction was correlated with the surface Bi coordination number and their geometrical distribution. Our work predicts the (001) facet as the only good candidate for both HER and OER, while the (010) facet is a fitting candidate for OER only. The (110) and (121) surfaces are acceptable candidates only for OER but less potential than (001) and (010). These outcomes will efficiently conduct experimentalists for an attentive design of facet-oriented BiVO samples toward improving water oxidation and proton reduction.

摘要

基于包含自旋轨道耦合的杂化密度泛函理论,研究了通过实验获得的单斜晶系BiVO₄的四个主要暴露晶面(010)、(110)、(001)和(121)对其光催化水分解反应性能的影响。尽管它们的电子结构相似,但基于晶体取向和终止情况,其传输和氧化还原特性呈现出各向异性。每个晶面在质子还原中的特殊作用与表面Bi配位数及其几何分布相关。我们的工作预测(001)晶面是析氢反应(HER)和析氧反应(OER)的唯一良好候选晶面,而(010)晶面仅是析氧反应的合适候选晶面。(110)和(121)表面仅是析氧反应的可接受候选晶面,但比(001)和(010)表面的潜力小。这些结果将有效地指导实验人员精心设计BiVO₄样品,以改善水氧化和质子还原过程。

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