Optimization and application of a gel polymer electrolyte in solid state super capacitors with graphite electrodes

IF 1.9 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
B. Gunasekara, K. Perera, K. Vidanapathirana, K. Vignarooban
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引用次数: 0

Abstract

The prime objective of the present study is to exploit a user friendly, inexpensive all solid state super capacitor using a suitable electrolyte and electrodes. A gel polymer electrolyte (GPE) consisted with polyvinylidene fluoride-co-hexafluopropylene (PVdF), ethylene carbonate (EC), propylene carbonate (PC) and zinc trifluoromethane sulfonate (Zn(CF3SO3)2-ZnTF) was prepared using solvent casting method and its properties were optimized by varying the composition. The composition of 16 PVdF : 22 ZnTF : 31 EC : 31 PC (weight %) exhibits the optimum room temperature conductivity of 3.09 × 10-3 Scm-1. It is purely an ionic conductor having a negligible electronic conductivity. In addition, it was possible to obtain a thin, mechanically stable film. The electrodes were prepared using Sri Lankan natural graphite (NG) with a polymer binder. Eventhough there are reports about natural graphite based super capacitors, Sri Lankan natural graphite has not been considered for super capacitors at a large scale. The main reason for turning towards natural graphite is to reap the benefits of low cost as well as the safety. In order to optimize the electrode properties, the ratio between graphite and polymer binder (in weight basis) was changed. The polymer binder used was polytetrafluoroethylene (PTFE). Super capacitor fabricated with the electrode of the composition, NG : PTFE = 90:10 shows the maximum single electrode specific capacitance (2.58 Fg-1). The fabricated device retains for continuous charge discharge operation with a minimum performance reduction.
凝胶聚合物电解质在石墨电极固态超级电容器中的优化与应用
本研究的主要目标是利用合适的电解质和电极开发一种用户友好,廉价的全固态超级电容器。采用溶剂铸造法制备了由聚偏氟乙烯-共六氟丙烯(PVdF)、碳酸乙烯(EC)、碳酸丙烯(PC)和三氟甲烷磺酸锌(Zn(CF3SO3)2-ZnTF)组成的凝胶聚合物电解质(GPE),并通过改变其组成对其性能进行了优化。16 PVdF: 22 ZnTF: 31 EC: 31 PC(重量%)的最佳室温电导率为3.09 × 10-3 cm-1。它是纯离子导体,电导率可以忽略不计。此外,它有可能获得一个薄的,机械稳定的薄膜。电极是用斯里兰卡天然石墨(NG)和聚合物粘结剂制备的。尽管有关于天然石墨基超级电容器的报道,但斯里兰卡天然石墨尚未被大规模考虑用于超级电容器。转向天然石墨的主要原因是为了获得低成本和安全的好处。为了优化电极性能,改变了石墨与聚合物粘结剂的重量比。使用的聚合物粘合剂是聚四氟乙烯(PTFE)。用NG: PTFE = 90:10的组合物制备的超级电容器显示出最大的单电极比电容(2.58 Fg-1)。制造的装置保留连续充放电操作,性能降低最小。
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来源期刊
Advances in Materials Research-An International Journal
Advances in Materials Research-An International Journal MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
27.30%
发文量
0
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