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64.2: The Humidity Sensing Properties of Organic-inorganic (AMPS/SiO_(2)) Hybrid Materials

机译:64.2:有机无机的湿度感测性能(AMPS / SIO_(2))杂种材料

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In this study, the impedance-type humidity sensor was prepared by using a novel organic-inorganic composite material and the sensing performances were experimentally investigated. The 2-acrylamido-2-methyl-propane sulfonic acid (AMPS) was hybridized in sol-gel process with silica gel (SiO_(2)). This hybrid material was coated on the Al_(2)O_(3) substrate with interdigited electrodes by using the spin coating method to be used as a sensing material. The interpenetrating polymer network (IPN) structure of hybrid sensing film could increased the water-resistivity and decreased the response time (10s from 95% to 20% RH) for this device. The impedance varied more than three orders of magnitude in the range of 25~95% RH under the 1kHz and 25°C conditions. The temperature dependence is 0.23 to 0.37 RH°C~(-1) under 15-55°C, respectively, and the hysteresis was below 1.5% RH. Furthermore, the surface properties, hybrid structure and sensing performances of this humidity sensor were investigated by using the SEM, ASAP and contact angel.
机译:在该研究中,通过使用新的有机 - 无机复合材料制备阻抗型湿度传感器,并且通过实验研究了感测性能。将2-丙基酰胺-2-甲基 - 丙烷磺酸(AMPs)用硅胶(SiO_(2))在溶胶 - 凝胶法中杂交。通过使用旋涂方法用作传感材料,将该混合材料涂覆在Al_(2)O_(3)衬底上,用旋涂方法用作传感材料。杂化传感膜的互持聚合物网络(IPN)结构可以增加防水率并降低该装置的响应时间(10s,从95%至20%RH)。在1KHz和25℃的条件下,阻抗在25〜95%RH的范围内变化了超过三个数量级。温度依赖性分别为15-55°C下的0.23至0.37 rH℃〜(-1),滞后低于1.5%RH。此外,通过使用SEM,ASAP和联系天使研究了该湿度传感器的表面性质,混合结构和感测性能。

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