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Sonochemical fabrication of mesoporous TiO2 inside diatom frustules for photocatalyst

机译:硅藻壳中介孔TiO2的声化学制备

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摘要

Mesoporous titanium dioxide (TiO2) has been assembled inside the macropores of diatom frustules by sonochemical condensation of titania precursor, and then thermal treated at an elevated temperature. The resulting hierarchical macro/mesoporous-structures of the TiO2 inside diatom were confirmed by characterizations of X-ray diffraction (XRD) and transmission electron microscopy (TEM). The amount of TiO2 inside the periodic macropores of diatom was controlled by varying the sonication time. It was found that the resultant composite with only 30 wt% TiO2 loading delivered a high photocatalytic performance, even better than that of pure P25. This is attributed to its hierarchical macro/mesoporous structure as it provides a large number of accessible active sites for efficient transportations of guest species to framework binding sites. Other macro/mesoporous structures with a nearly endless variety of functional chemistries and shapes are expected to be produced, leading to a range of novel applications in remediation, molecular transportation and environmental field by using this facile strategy. (C) 2013 Elsevier B.V. All rights reserved.
机译:通过二氧化钛前体的声化学缩合,在硅藻壳的大孔内组装了介孔二氧化钛(TiO2),然后在高温下进行了热处理。通过X射线衍射(XRD)和透射电子显微镜(TEM)的表征,证实了硅藻内部TiO2的分层宏观/中观结构。通过改变超声处理时间来控制硅藻的周期性大孔内的TiO2含量。发现仅负载30重量%的TiO 2的所得复合物提供了高的光催化性能,甚至优于纯P25的光催化性能。这归因于其分层的宏观/中层结构,因为它提供了大量可访问的活性位点,用于将客体物种有效运输到框架结合位点。有望生产出功能化学和形状几乎无穷无尽的其他宏观/近微结构,通过使用这种简便的策略,可以在修复,分子运输和环境领域中产生一系列新颖的应用。 (C)2013 Elsevier B.V.保留所有权利。

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