State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian, Liaoning, 116023, China.
Department of Chemistry, Southern University of Science and Technology, 1088 Xueyuan Avenue, Shenzhen, 518055, China.
Adv Mater. 2019 Dec;31(50):e1901997. doi: 10.1002/adma.201901997. Epub 2019 Aug 18.
Photocatalysis has been widely applied in various areas, such as solar cells, water splitting, and pollutant degradation. Therefore, the photochemical mechanisms and basic principles of photocatalysis, especially TiO photocatalysis, have been extensively investigated by various surface science methods in the last decade, aiming to provide important information for TiO photocatalysis under real environmental conditions. Recent progress that provides fundamental insights into TiO photocatalysis at a molecular level is highlighted. Insights into the structures of TiO and the basic principles of TiO photocatalysis are discussed first, which provides the basic concepts of TiO photocatalysis. Following this, details of the photochemistry of three important molecules (oxygen, water, methanol) on the model TiO surfaces are presented, in an attempt to unravel the relationship between charge/energy transfer and bond breaking/forming in TiO photocatalysis. Lastly, challenges and opportunities of the mechanistic studies of TiO photocatalysis at the molecular level are discussed briefly, as well as possible photocatalysis models.
光催化在太阳能电池、水分解和污染物降解等各个领域得到了广泛应用。因此,过去十年中,各种表面科学方法广泛研究了光催化的光化学机制和基本原理,特别是 TiO 光催化,旨在为实际环境条件下的 TiO 光催化提供重要信息。本文重点介绍了在分子水平上对 TiO 光催化的基本认识的最新进展。首先讨论了 TiO 的结构和 TiO 光催化的基本原理,为 TiO 光催化提供了基本概念。在此基础上,介绍了三种重要分子(氧气、水、甲醇)在模型 TiO 表面的光化学反应细节,试图揭示 TiO 光催化中电荷/能量转移与键断裂/形成之间的关系。最后,简要讨论了在分子水平上对 TiO 光催化进行机理研究的挑战和机遇,以及可能的光催化模型。