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介孔硅内光催化体系的设计与功能化。

Design and functionalization of photocatalytic systems within mesoporous silica.

机构信息

Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka, 565-0871 (Japan).

出版信息

ChemSusChem. 2014 Jun;7(6):1528-36. doi: 10.1002/cssc.201400111. Epub 2014 May 14.

Abstract

In the past decades, various photocatalysts such as TiO2, transition-metal-oxide moieties within cavities and frameworks, or metal complexes have attracted considerable attention in light-excited catalytic processes. Owing to high surface areas, transparency to UV and visible light as well as easily modified surfaces, mesoporous silica-based materials have been widely used as excellent hosts for designing efficient photocatalytic systems under the background of environmental remediation and solar-energy utilization. This Minireview mainly focuses on the surface-chemistry engineering of TiO2/mesoporous silica photocatalytic systems and fabrication of binary oxides and nanocatalysts in mesoporous single-site-photocatalyst frameworks. Recently, metallic nanostructures with localized surface plasmon resonance (LSPR) have been widely studied in catalytic applications harvesting light irradiation. Accordingly, silver and gold nanostructures confined in mesoporous silica and their corresponding catalytic activity enhanced by the LSPR effect will be introduced. In addition, the integration of metal complexes within mesoporous silica materials for the construction of functional inorganic-organic supramolecular photocatalysts will be briefly described.

摘要

在过去几十年中,各种光催化剂,如 TiO2、腔体内和框架中的过渡金属氧化物部分,或金属配合物,在光激发催化过程中引起了相当大的关注。介孔硅基材料由于具有高的比表面积、对紫外光和可见光的透明性以及易于修饰的表面,因此被广泛用作设计高效光催化系统的优良主体,这一背景是在环境修复和太阳能利用的基础上进行的。本综述主要集中在 TiO2/介孔硅光催化系统的表面化学工程以及二元氧化物和介孔单一位点光催化剂框架中纳米催化剂的制备。最近,具有局域表面等离子体共振(LSPR)的金属纳米结构在光催化应用中的光吸收方面得到了广泛的研究。因此,将介绍限制在介孔硅中的银和金纳米结构及其通过 LSPR 效应增强的相应催化活性。此外,还将简要描述金属配合物在介孔硅材料中的整合,用于构建功能性无机-有机超分子光催化剂。

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