Photocatalysis on Fine Powders of Perovskite Oxides

IF 9.3 2区 化学 Q1 CHEMISTRY, PHYSICAL Catalysis Reviews-Science and Engineering Pub Date : 1992-12-01 DOI:10.1080/01614949208016318
T. Kutty, M. Avudaithai
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引用次数: 7

Abstract

Abstract Fine powders of semiconductor oxides have been widely used as photocatalysts for many reactions. Among the various photocatalytic reactions, water splitting has been given much importance, since it is a promising chemical route for solar energy conversion. Perovskite oxides, in particular SrTiO, have been commonly used as photocatalysts because some of them can decompose H,O into H, and 0, without an external bias potential (1). In turn, this is because the conduction band (CB) edges of some of the perovskite oxides are more negative than the H+/H, energy level. Since the catalytic activity is related to the surface properties of the solids, fine powders rather than single crystals are used. Photocatalysis on fine powers can be conveniently discussed in three parts, viz. preparation, characterization and their catalytic activity. Presently, photo-decomposition of water using SrTiO, fine powders is discussed in greater detail, although other photocatalytic reactions on various perovskite oxides ar...
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钙钛矿氧化物细粉的光催化性能
摘要半导体氧化物的细粉末作为光催化剂已被广泛应用于许多反应。在各种光催化反应中,水裂解是一种很有前途的太阳能转化化学途径,受到了广泛的重视。钙钛矿氧化物,特别是SrTiO,通常被用作光催化剂,因为它们中的一些可以在没有外部偏置电位的情况下将H,O分解为H和0(1)。反过来,这是因为一些钙钛矿氧化物的导带(CB)边缘比H+/H,能级更负。由于催化活性与固体的表面性质有关,所以使用细粉末而不是单晶。细粉的光催化可以从制备、表征及其催化活性三个方面进行讨论。目前,使用SrTiO,细粉末对水的光分解进行了更详细的讨论,尽管在各种钙钛矿氧化物上的其他光催化反应尚不清楚。
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来源期刊
CiteScore
22.30
自引率
2.80%
发文量
29
期刊介绍: Catalysis Reviews is dedicated to fostering interdisciplinary perspectives in catalytic science and engineering, catering to a global audience of industrial and academic researchers. This journal serves as a bridge between the realms of heterogeneous, homogeneous, and bio-catalysis, providing a crucial and critical evaluation of the current state of catalytic science and engineering. Published topics encompass advances in technology and theory, engineering and chemical aspects of catalytic reactions, reactor design, computer models, analytical tools, and statistical evaluations.
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