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Force-compensated hydrogel-based pH sensor

机译:力补偿基于水凝胶的pH传感器

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This paper presents the design, simulation, assembly and testing of a force-compensated hydrogel-based pH sensor. In the conventional deflection method, a piezoresistive pressure sensor is used as a chemical-mechanical-electronic transducer to measure the volume change of a pH-sensitive hydrogel. In this compensation method, the pH-sensitive hydrogel keeps its volume constant during the whole measuring process, independent of applied pH value. In order to maintain a balanced state, an additional thermal actuator is integrated into the close-loop sensor system with higher precision and faster dynamic response. Poly (N-isopropylacrylamide) (PNIPAAm) with 5 mol% monomer 3-acrylamido propionic acid (AAmPA) is used as the temperature-sensitive hydrogel, while poly (vinyl alcohol) with poly (acrylic acid) (PAA) serves as the pH-sensitive hydrogel. A thermal simulation is introduced to assess the temperature distribution of the whole microsystem, especially the temperature influence on both hydrogels. Following tests are detailed to verify the working functions of a sensor based on pH-sensitive hydrogel and an actuator based on temperature-sensitive hydrogel. A miniaturized prototype is assembled and investigated in deionized water: the response time amounts to about 25 min, just half of that one of a sensor based on the conventional deflection method. The results confirm the applicability of the compensation method to the hydrogel-based sensors.
机译:本文介绍了基于力补偿的基于水凝胶的pH传感器的设计,仿真,组装和测试。在传统的偏转方法中,压阻式压力传感器用作化学-机械-电子转换器,以测量pH敏感水凝胶的体积变化。在这种补偿方法中,pH敏感水凝胶在整个测量过程中保持其体积恒定,与施加的pH值无关。为了保持平衡状态,附加的热执行器以更高的精度和更快的动态响应集成到闭环传感器系统中。具有5 mol%单体3-丙烯酰胺基丙酸(AAmPA)的聚(N-异丙基丙烯酰胺)(PNIPAAm)用作温度敏感型水凝胶,而具有聚丙烯酸(PAA)的聚(乙烯醇)用作pH值敏感的水凝胶。引入热模拟来评估整个微系统的温度分布,尤其是温度对两种水凝胶的影响。详细测试以下测试,以验证基于pH敏感水凝胶的传感器和基于温度敏感水凝胶的执行器的工作功能。在去离子水中组装并研究了小型原型:响应时间约为25分钟,仅为基于传统偏转方法的传感器的一半。结果证实了该补偿方法对基于水凝胶的传感器的适用性。

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