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Protonated Titanates and TiO_2 Nanostructured Materials: Synthesis, Properties, and Applications

机译:质子化的钛酸盐和TiO_2纳米结构材料:合成,性质和应用

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Tubular and fibrous nanostructures of titanates have recently been synthesized and characterized. Three general approaches (template assisted, anodic oxidation, and alkaline hydrothermal) for the preparation of nanostructured titanate and TiO_2 are reviewed. The crystal structures, morphologies, and mechanism of formation of nanostructured titanates produced by the alkaline hydrothermal method are critically discussed. The physicochemical properties of nanostructured titanates are highlighted and the links between properties and applications are emphasized. Examples of early applications of nanostructured titanates in catalysis, photocatalysis, electrocatalysis, lithium batteries, hydrogen storage, and solar-cell technologies are reviewed. The stability of titanate nanotubes at elevated temperatures and in acid media is considered.
机译:钛酸酯的管状和纤维状纳米结构最近已经合成和表征。综述了制备纳米结构钛酸酯和TiO_2的三种通用方法(模板辅助,阳极氧化和碱液热法)。严格讨论了碱性水热法生产的纳米结构钛酸盐的晶体结构,形态和形成机理。突出了纳米结构钛酸酯的理化性质,并强调了性质与应用之间的联系。本文综述了纳米结构钛酸酯在催化,光催化,电催化,锂电池,储氢和太阳能电池技术中的早期应用实例。考虑了钛酸酯纳米管在高温和酸性介质中的稳定性。

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