基于SiC:PVA复合材料的凝胶聚合物电解质及其在人体运动传感器中的应用

Rowaida A. Hadhy, Burak Kadem
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引用次数: 2

摘要

制备了添加聚乙烯醇(PVA)和未添加聚乙烯醇(PVA)的碳化硅(SiC),并对其作为电解质溶液和身体运动传感器进行了研究。研究了硅基电解质的pH值、电导率、光学性能和红外光谱等特性。对所研究的电解质,pH值和电导率表现出直接关系。根据溶液的光学性质,估计sic基复合材料的带隙值约为3.2eV。FTIR结果证实制备的碳化硅复合材料具有多个峰。电解质溶液(含和不含PVA复合材料的SiC)在固定时间内使用两个电极电池展示了不同的电压,以确认这些复合材料在电池中的工作能力。利用这些聚合物电解质在纤维素纸上的浇铸方法也制备了基于纸的装置。论文表明,使用SiC:PVA复合材料比单独使用SiC在光学图像中具有良好的稳定性。研究了这些纸基器件的性能。利用霍尔效应测试了这些纸基器件的电导率。测试了压力传感器,以及将这些纸质设备用作存储设备(如纸质电池)的能力。
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Gel Polymer Electrolyte Based on SiC:PVA Composites for Body Motion Sensor and Paper Based Application
Silicon Carbide (SiC) with and without adding Polyvinyl-Alcohol (PVA) were prepared and investigated both as an electrolyte solution and body motion sensor. The characteristics of SiC-based electrolytes have been investigated including pH, electrical conductivity, optical properties and FTIR. pH and electrical conductivity have exhibited direct relation to each other for the studied electrolytes. From the optical properties of the solutions, the band gap values have been estimated around 3.2eV for the SiC-based composites. FTIR results confirm the preparation of SiC composition with several peaks. The electrolyte solutions (SiC with and without PVA composite) have demonstrated different voltages over a fixed period of time using two electrode cells to confirm the ability of these composites to work in the batteries. Paperbased devices have been also prepared using the casting method of these polymeric electrolytes on a cellulose paper. Papers have shown good stability in the optical images using SiC:PVA composite over SiC alone. The properties of these paper-based devices are also investigated. The electrical conductivity of these paper-based devices using Hall Effect measurements was examined. Pressure sensors, as well as the ability to use these paper devices as storage devices such as paper batteries, were examined.
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