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Some Observations on the Development of Superior Photocatalytic Systems for Application to Water Purification by the Adsorb and Shuttle or the Interphase Charge Transfer Mechanisms

机译:通过吸附和穿梭或相间电荷转移机制开发用于水净化的高级光催化系统的一些观察

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摘要

Adsorb and shuttle (A/S) and interfacial charge transfer are the two major strategies for overcoming recombination in photocatalysis in this era of nanoparticle composites. Their relationships are considered here. A review of key literature is accompanied by a presentation of three new experiments within the overall aim of assessing the relation of these strategies. The cases presented include: A/S by a high silica zeolite/TiO2 composite, charge transfer (CT) between phases in a TiO2/WO3 composite and both A/S and CT by composites of TiO2 with powered activated carbon (AC) and single-walled carbon nanotubes (SWCNT). The opportunities presented by the two strategies for moving toward photocatalysts that could support applications for the removal of contaminants from drinking water or that lead to a practical adsorbent for organics that could be regenerated photocatalytically link this discussion to ongoing research here.
机译:吸附和穿梭(A / S)和界面电荷转移是在纳米颗粒复合材料时代克服光催化重组的两个主要策略。他们的关系在这里考虑。在评估主要文献的同时,还介绍了三个新实验,以评估这些策略之间的关系为总体目标。提出的案例包括:高硅沸石/ TiO2复合材料的A / S,TiO2 / WO3复合材料中相之间的电荷转移(CT),以及TiO2与动力活性炭(AC)和单一材料的复合材料的A / S和CT壁碳纳米管(SWCNT)。这两种策略向光催化剂转移所带来的机遇,可以支持从饮用水中去除污染物的应用,或者导致可以通过光催化再生的有机物的实用吸附剂,将这种讨论与此处正在进行的研究联系起来。

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