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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Sensing properties and photochromism of Ag-TiO2 nano-heterostructures
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Sensing properties and photochromism of Ag-TiO2 nano-heterostructures

机译:Ag-TiO2纳米异质结构的传感特性和光致变色

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摘要

Achieving advanced multifunctional materials displaying several coexisting properties is currently one of the most exciting and innovative research topics. In this study, we report the engineering of a multifunctional material exhibiting, at the same time, tuneable photochromic behaviour and gas-sensing properties for acetone detection. The photochromic property of silver modified (1-10 mol% Ag) titanium dioxide (titania, TiO2) NPs was monitored under consecutive UVA-light exposure times, and the change in colour was thoroughly investigated with both spectroscopic and colourimetric analyses. All Ag modified samples exhibited a significant change in colour and visible spectra after only 15 seconds of exposure, and this increased with further exposure. It was shown that both the silver molar content in the Ag-TiO2 nano-heterostructure, as well as the UVA-light irradiation time, governed the tunability of the photochromic behaviour (the colour changed from pale yellow to dark blue in Ag-modified specimens, while it remained white in unmodified TiO2). The same nano-heterostructures were also tested as sensing materials for resistive metal oxide gas sensors (MOS). These Ag-TiO2 nano-heterostructures proved to be highly sensitive for the detection of acetone vapours at low concentrations (<1 ppm), superior to the best TiO2-based sensors so far reported. This is the first thorough study to qualitatively monitor, in real-time, the growth of Ag-0 NPs on a TiO2 matrix, assessing both optical spectroscopy and colourimetric CIEL*a*b* analysis (e.g. what meets the eye), and to also demonstrate the superior acetone gas-sensing properties of such nano-heterostructures.
机译:实现具有多种共存特性的先进多功能材料是当前最令人激动和创新的研究主题之一。在这项研究中,我们报告了一种多功能材料的工程设计,该材料同时显示出可调节的光致变色行为和用于丙酮检测的气敏特性。在连续的UVA曝光时间下监测了银改性的(1-10 mol%Ag)二氧化钛(二氧化钛,TiO2)NPs的光致变色特性,并通过光谱和比色分析对颜色的变化进行了深入研究。仅经过15秒钟的曝光,所有经过Ag修饰的样品在颜色和可见光谱上均显示出显着变化,并且随着进一步的曝光而增加。结果表明,Ag-TiO2纳米异质结构中的银摩尔含量以及UVA-光照射时间均控制着光致变色行为的可调性(在Ag改性的样品中颜色从浅黄色变为深蓝色)。 ,而在未改性的TiO2中保持白色)。还测试了相同的纳米异质结构作为电阻金属氧化物气体传感器(MOS)的传感材料。这些Ag-TiO2纳米异质结构被证明对检测低浓度(<1 ppm)的丙酮蒸气非常敏感,优于迄今为止报道的最佳基于TiO2的传感器。这是首次定性实时监测TiO2基质上Ag-0 NPs的生长,评估光谱学和比色CIEL * a * b *分析(例如眼睛所见)的全面研究。还证明了这种纳米异质结构的卓越的丙酮气敏特性。

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