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Photocatalytic Properties of Co3O4-Coated TiO2 Powders Prepared by Plasma-Enhanced Atomic Layer Deposition

机译:等离子体增强原子层沉积法制备Co3O4包覆的TiO2粉体的光催化性能

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摘要

Co3O4-coated commercial TiO2 powders (P25) p-n junction photocatalysts were prepared by plasma-enhanced atomic layer deposition (PEALD) technique. The structure, morphology, bandgap, and photocatalytic properties under ultraviolet light were investigated systematically. Although the deposition of Co3O4 does not change the anatase structure and crystallite size of P25 powders, the ultraviolet photocatalytic activity has been improved evidently. For the Co3O4-coated P25 powders, the trace Co ions exist as Co3O4 nanoparticles attached to TiO2 powder surface instead of the occupation of Ti4+ position in TiO2 lattice. The Co3O4-coated P25 powders exhibit enhanced photocatalytic degradation efficiency of almost 100% for methylene blue in 1.5 h under ultraviolet light, compared with P25 of 80%. The Mott-Schottky plots of photocatalyst powders confirm the p-n heterojunction formation in Co3O4–TiO2 nanocomposite materials, which is beneficial to increase the efficiency of photogenerated electron-hole separation. In addition, the Co3O4 coating also promotes the adsorption of organic dyes of methylene blue on P25 powders.
机译:采用等离子增强原子层沉积(PEALD)技术制备了Co3O4包覆的商用TiO2粉体(P25)p-n结光催化剂。系统地研究了紫外光下的结构,形貌,能隙和光催化性能。尽管Co3O4的沉积不会改变P25粉末的锐钛矿结构和微晶尺寸,但紫外光催化活性已得到明显改善。对于Co3O4包覆的P25粉末,痕量Co离子以Co3O4纳米颗粒附着在TiO2粉末表面的形式存在,而不是占据TiO2晶格中的Ti 4 + 位置。 Co3O4涂层的P25粉末在紫外光下1.5小时内对亚甲基蓝的光催化降解效率提高了近100%,而P25则为80%。光催化剂粉末的Mott-Schottky图证实了Co3O4-TiO2纳米复合材料中p-n异质结的形成,这有利于提高光生电子-空穴分离的效率。此外,Co 3 O 4 涂层还促进了亚甲基蓝的有机染料在P25粉末上的吸附。

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