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Synthesis of Mesoporous TiO2-B Nanobelts with Highly Crystalized Walls toward Efficient H2 Evolution

机译:具有高结晶壁的介孔TiO2-B纳米带的合成对H2的有效释放

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摘要

Mesoporous TiO2 is attracting increasing interest due to properties suiting a broad range of photocatalytic applications. Here we report the facile synthesis of mesoporous crystalline TiO2-B nanobelts possessing a surface area as high as 80.9 m2 g−1 and uniformly-sized pores of 6–8 nm. Firstly, P25 powders are dissolved in NaOH solution under hydrothermal conditions, forming sodium titanate (Na2Ti3O7) intermediate precursor phase. Then, H2Ti3O7 is successfully obtained by ion exchange through acid washing from Na2Ti3O7 via an alkaline hydrothermal treatment. After calcination at 450 °C, the H2Ti3O7 is converted to a TiO2-B phase. At 600 °C, another anatase phase coexists with TiO2-B, which completely converts into anatase when annealed at 750 °C. Mesoporous TiO2-B nanobelts obtained after annealing at 450 °C are uniform with up to a few micrometers in length, 50–120 nm in width, and 5–15 nm in thickness. The resulting mesoporous TiO2-B nanobelts exhibit efficient H2 evolution capability, which is almost three times that of anatase TiO2 nanobelts.
机译:介孔TiO2因其适合广泛的光催化应用的特性而吸引了越来越多的关注。在这里,我们报道了介孔晶体TiO2-B纳米带的简便合成,该纳米带具有高达80.9 m 2 g -1 的表面积和6-8 nm的均一孔径的孔。首先,在水热条件下将P25粉末溶解在NaOH溶液中,形成钛酸钠(Na2Ti3O7)中间前体相。然后,通过碱水热处理从Na 2 Ti 3 O 7进行酸洗,通过离子交换成功地获得了H 2 Ti 3 O 7。在450°C下煅烧后,H2Ti3O7转化为TiO2-B相。在600°C下,另一种锐钛矿相与TiO2-B共存,当在750°C退火时,TiO2-B完全转化为锐钛矿。在450°C退火后获得的介孔TiO 2 -B纳米带是均匀的,其长度可达几微米,宽度可达50-120 nm,厚度可达5-15 nm。所得的介孔TiO 2 -B纳米带具有高效的H 2 进化能力,几乎是锐钛矿型TiO 2 纳米带的三倍。

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