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Review on the Photocatalyst Coatings of TiO2: Fabrication by Mechanical Coating Technique and Its Application

机译:TiO2光触媒涂层的研究:机械涂层技术的制备及其应用

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This review presents the latest results of studies directed at photocatalyst coatings of titanium dioxide (TiO2) prepared by mechanical coating technique (MCT) and its application. Compared with traditional coating techniques, MCT is a simple, low cost and useful coating formation process, which is proposed and developed based on mechanical frictional wear and impacts between substrate materials and metal powder particles in the bowl of planetary ball mill. The formation process of the metal coatings in MCT includes four stages: The nucleation by adhesion, the formation and coalescence of discrete islands, formation and thickening of continuous coatings, exfoliation of continuous coatings. Further, two-step MCT was developed based on the MCT concept for preparing composite coatings on alumina (Al2O3) balls. This review also discusses the influence on the fabrication of photocatalyst coatings after MCT and improvement of its photocatalytic activity: oxidation conditions, coating materials, melt salt treatment. In this review, the oxidation conditions had been studied on the oxidation temperature of 573 K, 673 K, 773 K, 873 K, 973 K, 1173 K and 1273 K, the oxidation time of 0.5 h, 1 h, 3 h, 10 h, 15 h, 20 h, 30 h, 40 h, and 50 h. The photocatalyst coatings showed the highest photocatalytic activity with the oxidation condition of 1073 K for 15 h. The metal powder of Ti, Ni and Cr had been used as the coating materials. The composite metal powder could affect the surface structure and photocatalytic activity. On the other hand, the melt salt treatment with KNO3 is an effective method to form the nano-size structure and enhance photocatalytic activity, especially under visible light.
机译:这篇综述介绍了针对通过机械涂层技术(MCT)制备的二氧化钛(TiO2)的光催化剂涂层的最新研究成果及其应用。与传统的涂层技术相比,MCT是一种简单,低成本且有用的涂层形成工艺,它是根据机械摩擦磨损以及行星式球磨机钵中基材和金属粉末颗粒之间的碰撞而提出和开发的。 MCT中金属涂层的形成过程包括四个阶段:粘附成核,离散岛的形成和聚结,连续涂层的形成和增厚,连续涂层的剥落。此外,基于MCT概念开发了两步MCT,用于在氧化铝(Al2O3)球上制备复合涂层。这篇综述还讨论了MCT后对光催化剂涂层制造的影响及其光催化活性的改善:氧化条件,涂层材料,熔盐处理。本文对氧化条件进行了研究,研究了氧化温度573 K,673 K,773 K,873 K,973 K,1173 K和1273 K,氧化时间0.5 h,1 h,3 h,10小时,15小时,20小时,30小时,40小时和50小时。在1073 K的氧化条件下,15h的光催化剂涂层表现出最高的光催化活性。 Ti,Ni和Cr的金属粉末已经用作涂层材料。复合金属粉会影响表面结构和光催化活性。另一方面,用KNO 3熔融盐处理是形成纳米尺寸结构并增强光催化活性的有效方法,特别是在可见光下。

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