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二氧化钛增强光催化及纳米多孔一维布拉格微腔中的染料巨吸收

Titania Enhanced Photocatalysis and Dye Giant Absorption in Nanoporous 1D Bragg Microcavities.

作者信息

Rico Victor J, Turk Halime, Yubero Francisco, Gonzalez-Elipe Agustin R

机构信息

Instituto de Ciencia de Materiales de Sevilla (CSIC-Univ. Sevilla), Avda. Américo Vespucio 49, E-41092 Sevilla, Spain.

出版信息

ACS Appl Nano Mater. 2022 Apr 22;5(4):5487-5497. doi: 10.1021/acsanm.2c00477. Epub 2022 Apr 7.

Abstract

Light trapping effects are known to boost the photocatalytic degradation of organic molecules in 3D photonic structures of anatase titania (a-TiO) with an inverse opal configuration. In the present work, we show that photocatalytic activity can also be enhanced in a-TiO thin films if they are incorporated within a nanoporous 1D optical resonant microcavity. We have designed and manufactured multilayer systems that, presenting a high open porosity to enable a straightforward diffusion of photodegradable molecules, provide light confinement effects at wavelengths around the absorption edge of photoactive a-TiO. In brief, we have observed that a nanoporous 1D Bragg microcavity prepared by electron beam evaporation at oblique angles comprising a central defect layer of nanoporous a-TiO boosts the photocatalytic degradation of nitrobenzene and methyl orange dye solutions. The multilayer structure of the microcavity was designed to ensure the appearance of optical resonances at the a-TiO layer location and wavelengths around the absorption onset of this semiconductor. In this porous 1D Bragg microcavity, the diffusion constraints of molecules through the capping layers covering the a-TiO are effectively compensated by an increase in the photocatalytic activity due to the light confinement phenomena. We also report that the absorption coefficient of methyl orange dye solution infiltrated within the pore structure of the microcavity is exalted at the wavelengths of the corresponding optical resonances. This effect gives rise to a small but non-negligible visible light photodegradation of dye molecules. The possibilities of tailoring the design of 1D photonic systems to boost the photocatalytic activity of a-TiO are discussed.

摘要

众所周知,光捕获效应可促进具有反蛋白石结构的锐钛矿型二氧化钛(a-TiO₂)三维光子结构中有机分子的光催化降解。在本工作中,我们表明,如果将a-TiO₂薄膜并入纳米多孔一维光学谐振微腔中,其光催化活性也可增强。我们设计并制造了多层系统,该系统具有高开放孔隙率,能使可光降解分子直接扩散,在光活性a-TiO₂吸收边缘附近的波长处提供光限制效应。简而言之,我们观察到通过倾斜角度的电子束蒸发制备的包含纳米多孔a-TiO₂中心缺陷层的纳米多孔一维布拉格微腔可促进硝基苯和甲基橙染料溶液的光催化降解。微腔的多层结构旨在确保在a-TiO₂层位置以及该半导体吸收起始附近的波长处出现光学共振。在这种多孔一维布拉格微腔中,由于光限制现象导致的光催化活性增加有效地补偿了分子通过覆盖a-TiO₂的封盖层的扩散限制。我们还报告说,渗透到微腔孔隙结构中的甲基橙染料溶液的吸收系数在相应光学共振波长处会提高。这种效应导致染料分子发生小但不可忽略的可见光光降解。本文讨论了定制一维光子系统设计以提高a-TiO₂光催化活性的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c175/9040112/a1367ec836bc/an2c00477_0002.jpg

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