Enhanced stability and re-usability of the optical sensor for pH monitoring using a layer-by-layer deposition technique

N. Raoufi, F. Surre, M. Rajarajan, T. Sun, K. Grattan
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Abstract

Stable and reliable pH optical sensor is important for many industrial applications. The layer-by-layer deposition technique is a simple and versatile method used to deposit a sensitive thin film on such an optical fibre-based device but creating a coating which can often be destroyed in use in highly acid or alkali solutions. It is thus important to create stable and durable sensors for operation under these extreme environments. The main aim of this study has been to prepare a number of such sensors and compare the performance of three different stabilization approaches used for the development of an effective wavelength-dependent pH-sensitive optical sensor. Techniques such as employing heat treatment, the deposition of two layers of a PAH/SiO2 thin film and the deposition of two layers APTMS/SiO2 as topping layers have been studied to determine the optimum approach to creating a desirable sensor - one yielding the same value of peak wavelength for a measurement of a known value of pH and to do so repeatedly. An improvement in performance and in shelf-life, stability and re-usability of the sensor has been achieved by the addition of two bilayers of APTMS/SiO2 in the work carried out and the results of the investigation undertaken are reported.
采用逐层沉积技术,提高了pH监测光学传感器的稳定性和可重用性
稳定可靠的pH光传感器在许多工业应用中都很重要。逐层沉积技术是一种简单而通用的方法,用于在这种基于光纤的设备上沉积敏感薄膜,但产生的涂层在使用强酸或强碱溶液时经常会被破坏。因此,在这些极端环境下制造稳定耐用的传感器非常重要。本研究的主要目的是制备一些这样的传感器,并比较用于开发有效波长相关ph敏感光学传感器的三种不同稳定方法的性能。已经研究了诸如采用热处理、沉积两层PAH/SiO2薄膜和沉积两层APTMS/SiO2作为顶层等技术,以确定创建理想传感器的最佳方法-一种产生相同峰值波长值的传感器,用于测量已知的pH值,并重复这样做。在进行的工作中,通过添加两层APTMS/SiO2,传感器的性能和保质期、稳定性和可重复使用性得到了改善,并报告了进行的调查结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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