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首页> 外文期刊>Nanoscale >Novel silica surface charge density mediated control of the optical properties of embedded optically active materials and its application for fiber optic pH sensing at elevated temperatures
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Novel silica surface charge density mediated control of the optical properties of embedded optically active materials and its application for fiber optic pH sensing at elevated temperatures

机译:新型硅表面电荷密度介导嵌入式的光学特性的控制光学活性的材料及其应用为光纤传感pH值升高温度

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摘要

Silica and silica incorporated nanocomposite materials have been extensively studied for a wide range of applications. Here we demonstrate an intriguing optical effect of silica that, depending on the solution pH, amplifies or attenuates the optical absorption of a variety of embedded optically active materials with very distinct properties, such as plasmonic Au nanoparticles, non-plasmonic Pt nanoparticles, and the organic dye rhodamine B (not a pH indicator), coated on an optical fiber. Interestingly, the observed optical response to varying pH appears to follow the surface charge density of the silica matrix for all the three different optically active materials. To the best of our knowledge, this optical effect has not been previously reported and it appears universal in that it is likely that any optically active material can be incorporated into the silica matrix to respond to solution pH or surface charge density variations. A direct application of this effect is for optical pH sensing which has very attractive features that can enable minimally invasive, remote, real time and continuous distributed pH monitoring. Particularly, as demonstrated here, using highly stable metal nanoparticles embedded in an inorganic silica matrix can significantly improve the capability of pH sensing in extremely harsh environments which is of increasing importance for applications in unconventional oil and gas resource recovery, carbon sequestration, water quality monitoring, etc. Our approach opens a pathway towards possible future development of robust optical pH sensors for the most demanding environmental conditions. The newly discovered optical effect of silica also offers the potential for control of the optical properties of optically active materials for a range of other potential applications such as electrochromic devices.
机译:硅和二氧化硅纳米复合材料材料都已经被广泛地研究过了广泛的应用。一个有趣的光学效果的硅,根据溶液的pH值、放大或变弱的光学吸收各种各样的嵌入式有光学活性的材料不同的属性,如电浆盟non-plasmonic Pt纳米粒子,纳米粒子和有机染料罗丹明B (pH值指标),涂层光纤。有趣的是,观察到的光学响应不同pH值似乎遵循表面电荷所有这三个硅的密度矩阵不同的光学活性的材料。我们所知,这种光学效应之前报道,似乎普遍它是任何光学活性的可能硅材料可以被纳入矩阵反应溶液的pH值或表面电荷密度变化。这种效应的光学传感的pH值非常有吸引力的特性,可以吗微创、远程、实时和连续分布的pH监测。特别是,证明在这里,使用高稳定金属纳米粒子嵌入在一个无机硅矩阵可以显著提高pH值感应的能力极其恶劣环境的日益重要性应用程序在非传统的石油和天然气资源回收、固碳、水质量监控等。对未来可能的发展途径健壮的光学pH传感器的要求环境条件。硅的光学效应也提供了潜在的光学特性的控制光学活性的材料范围其他潜在应用等电致变色的设备。

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