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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Hybrid sol-gel thin films doped with a pH indicator: effect of organic modification on optical pH response and film surface hydrophilicity
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Hybrid sol-gel thin films doped with a pH indicator: effect of organic modification on optical pH response and film surface hydrophilicity

机译:掺有pH指示剂的混合溶胶-凝胶薄膜:有机改性对光学pH响应和膜表面亲水性的影响

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摘要

Optical sensors for application in innovative wearable sensing systems such as textile-integrated systems and wireless sensor platforms rely on the development of low-cost multifunctional materials compatible with standard fabrication technologies. We are developing optically responsive pH sensitive sol-gel coatings for integration with a mobile wireless smart tag sensing system. For this application, we have fabricated a range of thin pH sensitive films using bromocresol green (BCG) indicator immobilised in inorganic-organic silica hybrid matrices prepared by a sol-gel method and deposited by spin-coating onto glass substrates. The surface hydrophilicity of the films were varied by using the inorganic sol-gel precursor tetraethoxysilane together with either meth-yltriethoxysilane, ethyltriethoxysilane, phenyltrimethox-ysilane or glycidoxypropyitrirnethoxysilane as organically modified sol-gel precursors, co-polymerised in different ratios. Spectral characterisation of the films was performed using visible absorption spectroscopy. The shift in absorption maxima and other spectral changes of the different matrices have been identified, and the apparent pK_(app) values of the immobilised BCG pH indicator determined. The surface wettability properties of the films have been studied by measuring the contact angle of water, form-amide and diiodomethane which has allowed the estimation of the surface free energy (SFE) using three different models: Owens-Wendt, Wu and van Oss-Chaudhury- Good. It is shown that the SFE of the hybrid films is directly related to the type and the degree of organic modification, which in turn has a significant effect on the pH response-time of these sensing films.
机译:用于创新型可穿戴传感系统(如纺织品集成系统和无线传感器平台)的光学传感器依赖于与标准制造技术兼容的低成本多功能材料的开发。我们正在开发对光学敏感的pH敏感溶胶凝胶涂料,以与移动无线智能标签感应系统集成。对于此应用,我们使用溴甲酚绿(BCG)指示剂制造了一系列pH敏感薄膜,该指示剂固定在通过溶胶-凝胶法制备的无机-有机二氧化硅杂化基质中,并通过旋涂沉积在玻璃基板上。通过使用无机溶胶-凝胶前体四乙氧基硅烷以及甲基-基三乙氧基硅烷,乙基三乙氧基硅烷,苯基三甲氧基-硅烷或环氧丙氧基丙三乙氧基硅烷作为有机改性的溶胶-凝胶前体来改变膜的表面亲水性,它们以不同的比例共聚。使用可见吸收光谱对膜进行光谱表征。已经确定了不同基质吸收最大值的变化和其他光谱变化,并确定了固定的BCG pH指示剂的表观pK_(app)值。通过测量水,甲酰胺和二碘甲烷的接触角,研究了薄膜的表面润湿性,这可以使用三种不同的模型估算表面自由能(SFE):Owens-Wendt,Wu和van Oss-乔杜里-好。结果表明,杂化膜的SFE与有机改性的类型和程度直接相关,这反过来对这些传感膜的pH响应时间有重要影响。

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