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First Synthesis of Highly Crystalline, Hexagonally Ordered, Uniformly Mesoporous TiO2-B and Its Optical and Photocatalytic Properties

机译:高度结晶,六角有序,均匀介孔的TiO2-B的首次合成及其光学和光催化性能

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摘要

Out of the 11 different phases of titanium dioxide, TiO2-B is unique in that it contains crystalline voids, which can readily intercalate small cations. Because of this property, TiO2-B is receiving great attention as an electrode material for energy storage devices, dye sensitized solar cells, and supercapacitors as well as a photocatalyst for hydrogen production and dye decomposition. Applications in the above arenas are expected to increase significantly if this substance can be prepared in the form of ordered, uniformly mesoporous TiO2-B. In the current study, we developed the first method for synthesis of hexagonally ordered, uniformly mesoporous TiO2-B (houm-TiO2-B) with a high degree of purity on a large scale (>10 g). The results show that the band gap energy of houm-TiO2-B is 0.36 eV less than that of the corresponding nanoparticle. Importantly, houm-TiO2-B displays a higher performance than the corresponding nanoparticles as a photocatalyst in hydrogen production from aqueous methanol and in the photodecomposition of 4-chlorophenol and methylene blue.
机译:在11种不同的二氧化钛相中,TiO2-B的独特之处在于它包含晶体空隙,这些空隙可以轻易地插入小阳离子。由于这种特性,TiO2-B作为储能设备,染料敏化太阳能电池和超级电容器的电极材料以及用于制氢和染料分解的光催化剂受到了广泛关注。如果可以以有序,均匀介孔的TiO2-B形式制备该物质,则在上述领域的应用有望显着增加。在当前的研究中,我们开发了第一种方法,可大规模合成高纯度(> 10 g)的六方有序,均匀介孔的TiO2-B(houm-TiO2-B)。结果表明,houm-TiO2-B的带隙能比相应的纳米粒子小0.36 eV。重要的是,在由甲醇水溶液制氢,以及4-氯苯酚和亚甲基蓝的光分解中,胡姆-TiO2-B在光催化方面表现出比相应的纳米颗粒更高的性能。

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