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光催化中活性氧的生成和检测。

Generation and Detection of Reactive Oxygen Species in Photocatalysis.

机构信息

Department of Materials Science and Technology, Nagaoka University of Technology Nagaoka 940-2188, Japan.

出版信息

Chem Rev. 2017 Sep 13;117(17):11302-11336. doi: 10.1021/acs.chemrev.7b00161. Epub 2017 Aug 4.

Abstract

The detection methods and generation mechanisms of the intrinsic reactive oxygen species (ROS), i.e., superoxide anion radical (O), hydrogen peroxide (HO), singlet oxygen (O), and hydroxyl radical (OH) in photocatalysis, were surveyed comprehensively. Consequently, the major photocatalyst used in heterogeneous photocatalytic systems was found to be TiO. However, besides TiO some representative photocatalysts were also involved in the discussion. Among the various issues we focused on the detection methods and generation reactions of ROS in the aqueous suspensions of photocatalysts. On the careful account of the experimental results presented so far, we proposed the following apprehension: adsorbed OH could be regarded as trapped holes, which are involved in a rapid adsorption-desorption equilibrium at the TiO-solution interface. Because the equilibrium shifts to the adsorption side, trapped holes must be actually the dominant oxidation species whereas OH in solution would exert the reactivity mainly for nonadsorbed reactants. The most probable routes of generating intrinsic ROS at the surfaces of two polymorphs of TiO, anatase and rutile, were discussed along with some plausible rational reaction processes. In addition to the four major ROS, three ROS, that is organic peroxides, ozone, and nitric oxide, which are less common in photocatalysis are also briefly reviewed.

摘要

本文全面综述了光催化过程中内源性活性氧(ROS),即超氧阴离子自由基(O)、过氧化氢(HO)、单线态氧(O)和羟基自由基(OH)的检测方法和生成机制。结果表明,在多相光催化体系中,主要的光催化剂是 TiO。然而,除了 TiO,我们还讨论了一些有代表性的光催化剂。在我们关注的各种问题中,重点讨论了光催化剂水悬浮液中 ROS 的检测方法和生成反应。根据迄今为止提出的实验结果,我们提出了以下观点:吸附的 OH 可以被认为是被捕获的空穴,这些空穴在 TiO-溶液界面处处于快速的吸附-解吸平衡中。由于平衡向吸附侧移动,被捕获的空穴必须是主要的氧化物种,而溶液中的 OH 主要对非吸附的反应物起反应。还讨论了两种 TiO 多晶型物(锐钛矿和金红石)表面生成内源性 ROS 的最可能途径,以及一些合理的反应过程。除了四种主要的 ROS,本文还简要综述了在光催化中不太常见的三种 ROS,即有机过氧化物、臭氧和一氧化氮。

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