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Response time enhancement of pH sensing films by means of hydrophilic nanostructured coatings

机译:通过亲水性纳米结构涂层提高pH传感膜的响应时间

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This work describes the improvement in response time of thin film optical fluorescent sensors for pH detection based on the 8-hydroxypyrene-1,3,6-trisulfonic acid trisodium salt (HPTS) pH-sensitive molecule. Two different kinds of structures were fabricated to demonstrate these concepts, using the electrostatic layer-by-layer (LbL) assembly method. These structures were built up on both glass slides and tapered ends of standard communications optical fiber substrates. The basic structures are based on a sensitive coating formed by the alternate deposition of the polymer poly(allylamine hydrochloride) (PAH) as the cationic monolayers and the polymer poly(acrylic acid) (PAA) and the fluorescent pH indicator HPTS as the anionic monolayers. These sensitive coatings showed a long response time when they were immersed in different pHs. In order to improve the performance of basic devices one approach was followed, which consisted of the deposition of a highly hydrophilic block before the sensitive coating. These enhanced devices were proved to decrease the response time dramatically. AFM and water contact angle measurements showed that properties of these structures including the hydrophilic block had higher roughness and lower contact angle (around 10°) whereas the ones without the hydrophilic block were smoother and had higher contact angles (around 50°). The response time of both devices was also measured while the pH was changed several times resulting in a remarkable reduction with the new devices. The most significant reduction was in rise time response between pH 3 and pH 7 which was five times minimized.
机译:这项工作描述了基于8-羟基py-1,3,6-三磺酸三钠盐(HPTS)pH敏感分子的用于pH检测的薄膜光学荧光传感器的响应时间的改进。使用静电逐层(LbL)组装方法制造了两种不同类型的结构来演示这些概念。这些结构建立在标准通信光纤基板的载玻片和锥形端上。基本结构基于通过交替沉积聚合物聚(烯丙胺盐酸盐)(PAH)作为阳离子单层和聚合物聚(丙烯酸)(PAA)和荧光pH指示剂HPTS作为阴离子单层的交替形成的敏感涂层。当这些敏感的涂料浸入不同的pH值时,它们显示出较长的响应时间。为了改善基本装置的性能,采用了一种方法,该方法包括在敏感涂层之前沉积高度亲水的嵌段。事实证明,这些增强型设备可显着减少响应时间。 AFM和水接触角的测量表明,包括亲水性嵌段的这些结构的性质具有较高的粗糙度和较低的接触角(约10°),而没有亲水性嵌段的那些结构更光滑且具有较高的接触角(约50°)。还测量了两个设备的响应时间,同时改变了几次pH值,从而大大降低了新设备的使用时间。最显着的降低是pH 3和pH 7之间的上升时间响应,这是最小化的五倍。

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