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首页> 外文期刊>Sensors and Actuators, A. Physical >Influence of organic pH dyes on the structural and optical characteristics of silica nanostructured matrix for fiber optic sensing
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Influence of organic pH dyes on the structural and optical characteristics of silica nanostructured matrix for fiber optic sensing

机译:有机pH染料对光纤感应硅纳米结构基质结构和光学特性的影响

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摘要

Owing to the fast responsive fiber optical pH sensing characteristics, silica porous matrix is synthesized through a low temperature sol-gel technique. Three different pH dyes namely bromophenol blue (BPB), creosol red (CR) and phenol red (PR) are encapsulated in silica matrix to observe their behavior on structural and optical characteristics of host matrix. FESEM/EDS and AFM analyses reveal that CTAB assisted silica matrix before and after dyes encapsulation has crack-free and porous morphology. The creosol red encapsulated silica matrix (SiO2-CR) has small average surface roughness (Ra) similar to 1.05 nm with ultra-thin texture similar to 4.06 nm compared to other dyes. FTIR analysis shows that higher content of equivalent to Si-OH group in SiO2-CR matrix shows more hydrophilic features than others matrices. BET analysis indicates that nano-porous structures possess extremely large surface area similar to 450 m(2)/g, and they display specific selectivity towards each dye. UV-vis analysis shows that SiO2-CR matrix has low refractive index 1.36 and high transparency 81% at 632.8 nm with a certain extent of absorption in the visible region. The pH-responsive matrices are deposited onto the PCS (Plastic Clad Silica) optical fibers. The performance of the prepared devices is assessed by measuring their response in the pH range of 1-12. SiO2-PR matrix coated fiber sensor exhibited rapid response of time 0.51 sat pH 12 and 0.17 s at pH 1. The prepared pH sensor has linear response with coefficient of determination (R-2) 0.90 at 440 nm within pH 1-12. Experimental findings suggest that SiO2-PR matrix has more sensing potential at dynamic pH range 1-12 than SiO2-CR matrix and SiO2-BPB matrix. (C) 2018 Elsevier B.V. All rights reserved.
机译:由于响应纤维光学pH传感特性快,通过低温溶胶 - 凝胶技术合成二氧化硅多孔基质。三种不同的pH染料即溴苯酚蓝(BPB),串油红色(Cr)和苯酚红色(Pr)封装在二氧化硅基质中,观察其对宿主基质的结构和光学特性的行为。 FeSEM / EDS和AFM分析显示,CTAB辅助染料封装之前和之后的硅胶基质具有无裂缝和多孔的形态。串溶胶红色包封的二氧化硅基质(SiO 2 -Cr)的平均表面粗糙度(Ra)具有与1.05nm相似的小平均表面粗糙度(RA),与其他染料相比,超薄纹理与4.06nm相比。 FTIR分析表明,SiO 2-Cr基质中的Si-OH基团的较高含量显示比其他矩阵更亲水的特征。 BET分析表明纳米多孔结构具有类似于450μm(2)/ g的极大的表面积,并且它们对每个染料显示特异性选择性。 UV-VIS分析表明,SiO2-Cr基质在632.8nm处具有低折射率1.36和高透明度81%,在可见区域中具有一定程度的吸收。将pH响应矩阵沉积在PCS(塑料包层二氧化硅)光纤上。通过在1-12的pH范围内测量它们的响应来评估制备的装置的性能。 SiO2-Pr基质涂覆的光纤传感器在pH1中表现出0.51族pH 12和0.17s的快速响应。制备的pH传感器具有线性响应,其系数在pH 1-12内的440nm处的测定系数(R-2)0.90。实验结果表明,SiO2-Pr基质在动态pH范围内具有比SiO2-Cr基质和SiO2-BPB矩阵更多的感测电位。 (c)2018年elestvier b.v.保留所有权利。

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