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贫氧缺陷态增强三氧化钨光催化:量子动力学视角

Depleted Oxygen Defect State Enhancing Tungsten Trioxide Photocatalysis: A Quantum Dynamics Perspective.

作者信息

Cheng Cheng, Fang Qiu, Fernandez-Alberti S, Long Run

机构信息

College of Chemistry, Key Laboratory of Theoretical & Computational Photochemistry of Ministry of Education, Beijing Normal University, Beijing 100875, China.

Departamento de Cienciay Tecnologia, Universidad Nacional de Quilmes/CONICET, B1876BXD Bernal, Argentina.

出版信息

J Phys Chem Lett. 2022 Jun 23;13(24):5571-5580. doi: 10.1021/acs.jpclett.2c01541. Epub 2022 Jun 13.

Abstract

Oxygen vacancies generally create midgap states in transition metal oxides, which are expected to decrease the photoelectrochemical water-splitting efficiency. Recent experiments defy this expectation but leave the mechanism unclear. Focusing on the photoanode WO as a prototypical system, we demonstrate using nonadiabatic molecular dynamics that an oxygen vacancy suppresses nonradiative electron-hole recombination, because the defect acts as an electron reservoir instead of a recombination center. The occupied midgap electrons prefer to be populated compared to the band edge transition because of a larger transition dipole moment, converting to depleted/unoccupied trap states that rapidly accept conduction band electrons and then cause trap-assisted recombination by impeding the bandgap recombination regardless of oxygen vacancy configurations. The reported results provide a fundamental understanding of the "realistic" role of the oxygen vacancies and their influence on charge-phonon dynamics and carrier lifetime. The study generates valuable insights into the design of high-performance transition metal oxide photocatalysts.

摘要

氧空位通常会在过渡金属氧化物中产生带隙中间态,这有望降低光电化学水分解效率。最近的实验与这一预期相悖,但机理尚不清楚。以光阳极WO作为典型体系,我们通过非绝热分子动力学证明,氧空位会抑制非辐射电子 - 空穴复合,因为该缺陷充当电子库而非复合中心。由于跃迁偶极矩较大,与带边跃迁相比,占据的带隙中间电子更倾向于填充,转化为耗尽/未占据的陷阱态,这些陷阱态会迅速接受导带电子,然后通过阻碍带隙复合导致陷阱辅助复合,而与氧空位构型无关。报道的结果为氧空位的“实际”作用及其对电荷 - 声子动力学和载流子寿命的影响提供了基本认识。该研究为高性能过渡金属氧化物光催化剂的设计提供了有价值的见解。

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