TiO2:半导体光催化剂

A. Aziz, F. Khatun, Minhaj Uddin Monir, Sim Lan Ching, Leong Hon
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引用次数: 2

摘要

二氧化钛(TiO2)被认为是一种惰性和安全的材料,几十年来一直在许多应用中使用。二氧化钛因其在催化、抗菌剂、民用纳米涂料(自清洁)、特别是光催化等广泛领域的普遍特性而受到广泛研究,并影响着人们的生活质量。因此,纳米技术的发展,二氧化钛纳米粒子,具有许多新颖和有用的性质,越来越多地被制造和使用。在这些应用中,掺杂贵金属的TiO2是很好的候选材料。二氧化钛迷人的物理和化学特性取决于其晶体相、颗粒大小和形状。例如,不同相的TiO2晶体具有不同的带隙,金红石TiO2为3.0 eV,锐钛矿TiO2为3.2 eV,这决定了TiO2的光催化性能。本章介绍了TiO2的基本信息以及作为半导体光催化剂的TiO2纳米粒子的纳米结构的理论概念。
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TiO2: A Semiconductor Photocatalyst
Titanium dioxide (TiO2) is considered as an inert and safe material and has been used in many applications for decades. TiO2 have been widely studied, due to its interesting general properties in a wide range of fields including catalysis, antibacterial agents, in civil as nano-paint (self-cleaning) and especially photocatalysis, and that affect the quality of life. Thus, the development of nanotechnologies TiO2 nanoparticles, with numerous novel and useful properties, are increasingly manufactured and used. TiO2 doped with noble metal are good candidates in the performance these applications. The fascinating physical and chemical features of TiO2 depend on the crystal phase, size and shape of particles. For example, varying phases of crystalline TiO2 have different band gaps that rutile TiO2 of 3.0 eV and anatase TiO2 of 3.2 eV, determine the photocatalytic performance of TiO2. This chapter explains basic information on TiO2 and theoretical concepts of nanostructure of TiO2 nanoparticles as a semiconductor photocatalyst.
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