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Study on chitosan film properties as a green dielectric

机译:壳聚糖薄膜特性作为绿色电介质的研究

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Chitosan film dielectrics to produce an electrostatic capacitor were prepared by the solution cast technique. The charging and discharging of the capacitor were done using RC series circuit with DC voltage supply because chitosan has bipolar properties. First testing was by varying supply voltage of 1, 3, 5, 10 and 15 V, respectively, and could be determined that the most effective voltage for chitosan film can be well polarised is 5 V. The results of second testing for the use of 5 V supply showed that the capacitance of a chitosan film capacitor decreased with the increase in load value. For loads of 100, 1K, 10K, 100K and 1M Ω, the capacitance values of the chitosan film capacitor were 3.1725, 0.4136, 0.05379, 0.007917 and 0.001522 F, respectively. It was also found that the increase in voltage of the capacitor at charging process was faster for the lower load. Therefore, the research result has corresponded to the general formula that used to calculate the capacitance value and thus, the biopolymer chitosan has potential as a sustainable green dielectric.
机译:通过溶液浇铸技术制备壳聚糖膜电介质以制备静电电容器。使用具有直流电压电源的RC系列电路进行电容器的充电和放电,因为壳聚糖具有双极性能。首先测试是分别不同的电源电压为1,3,5,10和15V,并且可以确定壳聚糖膜的最有效电压可以很好地极化为5 V.第二次测试的使用结果5 V供应表明,壳聚糖薄膜电容器的电容随负载值的增加而降低。对于100,100,1K,10K,100K和1MΩ的负载,壳聚糖膜电容器的电容值分别为3.1725,0.4136,0.05379,0.007917和0.001522f。还发现,对于较低负载,电容器在充电过程中的电压增加更快。因此,研究结果对应于用于计算电容值的通式,因此,生物聚合物壳聚糖具有可持续的绿色电介质。

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