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金纳米粒子修饰的 Keggin 离子/TiO2 光催化剂,用于提高太阳光光催化性能。

Gold nanoparticle-decorated keggin ions/TiO2 photococatalyst for improved solar light photocatalysis.

机构信息

School of Applied Science, RMIT University, GPO Box 2476 V, Melbourne, Victoria 3001, Australia.

出版信息

Langmuir. 2011 Jun 7;27(11):6661-7. doi: 10.1021/la2007765. Epub 2011 May 2.

DOI:10.1021/la2007765
PMID:21534553
Abstract

We demonstrate a facile localized reduction approach to synthesizing a Au nanoparticle-decorated Keggin ion/TiO(2) photococatalyst for improved solar light photocatalysis application. This has been achieved by exploiting the ability of TiO(2)-bound Keggin ions to act as a UV-switchable, highly localized reducing agent. Notably, the approach proposed here does not lead to contamination of the resultant cocatalyst with free metal nanoparticles during aqueous solution-based synthesis. The study shows that for Keggin ions (phosphotungstic acid, PTA), being photoactive molecules, the presence of both Au nanoparticles and PTA on the TiO(2) surface in a cocatalytic system can have a dramatic effect on increasing the photocatalytic performance of the composite system, as opposed to a TiO(2) surface directly decorated with metal nanoparticles without a sandwiched PTA layer. The remarkable increase in the photocatalytic performance of these materials toward the degradation of a model organic Congo red dye correlates to an increase of 2.7-fold over that of anatase TiO(2) after adding Au to it and 4.3-fold after introducing PTA along with Au to it. The generalized localized reduction approach to preparing TiO(2)-PTA-Au cocatalysts reported here can be further extended to other similar systems, wherein a range of metal nanoparticles in the presence of different Keggin ions can be utilized. The composites reported here may have wide potential implications toward the degradation of organic species and solar cell applications.

摘要

我们展示了一种简便的局部还原方法,用于合成金纳米粒子修饰的 Keggin 离子/TiO(2)光催化剂,以提高太阳能光催化应用的效率。这是通过利用 TiO(2)结合的 Keggin 离子作为 UV 可切换的、高度局部还原剂的能力来实现的。值得注意的是,这里提出的方法在基于水溶液的合成过程中不会导致游离金属纳米粒子污染所得共催化剂。研究表明,对于 Keggin 离子(磷钨酸,PTA)作为光活性分子,在共催化体系中,Au 纳米粒子和 PTA 都存在于 TiO(2)表面上,这对提高复合体系的光催化性能有显著影响,而不是 TiO(2)表面直接修饰有金属纳米粒子而没有夹在中间的 PTA 层。这些材料对模型有机刚果红染料的光催化降解性能的显著提高与添加 Au 后锐钛矿 TiO(2)的光催化性能提高 2.7 倍,添加 PTA 和 Au 后提高 4.3 倍相对应。这里报道的用于制备 TiO(2)-PTA-Au 共催化剂的广义局部还原方法可以进一步扩展到其他类似的体系中,其中可以利用存在不同 Keggin 离子的一系列金属纳米粒子。这里报道的复合材料可能对有机物种的降解和太阳能电池应用具有广泛的潜在影响。

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