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Conductive Polymer (Graphene/PPy)–BiPO4 Composite Applications in Humidity Sensors

机译:导电聚合物(石墨烯/ PPY)-BIPO4复合应用在湿度传感器中

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摘要

In this particular experiment, a chain of conductive polymer graphene/polypyrrole (Gr/PPy) and BiPO4—or (Gr/PPy)–BiPO4—materials were prepared and used as moisture-sensitive materials. The structure and morphology of the conductive polymer (Gr/PPy)–BiPO4 materials were analyzed using an X-ray diffractometer, scanning electron microscopy, transmission electron microscopy, and energy-dispersive X-ray spectroscopy. Moreover, properties such as hysteresis loop, impedance, sensing response, and response and recovery time were calculated and evaluated using an inductance–capacitance–resistance analyzer. The data expressed that PPy/BiPO4, as prepared in this study, exhibited excellent sensing properties, with impedance changing by only a few orders of range. Furthermore, the response time and time of recovery were 340 s and 60 s, respectively, and negligible humidity hysteresis occurred at different relative humidities. Therefore, conductive PPy/BiPO4, as prepared in the present study, is an excellent candidate for application in humidity sensors.
机译:在这个特定的实验中,链导电聚合物石墨烯/聚吡咯(GR /聚吡咯)和制备BiPO4-或(GR / PPY)-BiPO4材料和用作湿气敏感的材料。使用X射线衍射仪,扫描电子显微镜,透射电子显微镜和能量分散X射线光谱分析导电聚合物(GR / PPY)-BIPO4材料的结构和形态。此外,使用电感 - 电容电阻分析仪计算和评估等特性,例如滞后回路,阻抗,感测响应和响应和恢复时间。该数据表明,如本研究所述的准备好的PPY / BIPO4表现出优异的传感特性,阻抗仅通过少数范围变化。此外,响应时间和恢复时间分别为340 s和60 s,并且在不同的相对湿度下发生了可忽略的湿度滞后。因此,如本研究制备的导电PPY / BIPO4是在湿度传感器中施加的优异候选者。

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