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Chitosan hydrogel-based electrolyte for clean and biodegradable batteries: energetic and conductometric studies

机译:基于壳聚糖水凝胶的电解质,用于清洁和可生物降解的电池:精力充沛和电导测量

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Measurements of voltages generated in clean and biodegradable batteries using lithium-chitosan as electrolyte, carbon and nickel as electrodes, were reported. They produced small amounts of energy providing environment was preserved. The energy smallness was argued by conductivity measurements. The concentration and temperature dependences were undertaken. These measurements were carried out from 0.0005 to 1.0moldm(-3) in the temperature range 258-323K, and were compared to glycerol, being clean viscous solvent. The purpose was to substitute toxic solvents currently used, by clean and biodegradable solvents having good performances. The results were analysed with Debye-Huckel-Onsager law at low concentrations and Quasi-Lattice Model at moderate and higher concentrations. The temperature dependence of conductivity was also described using Vogel-Tamman-Fulcher equation. By comparing it to Arrhenius theory, very interesting parameters, such as electrical conductivity infinite dilution, activation energy and Vogel temperature, corresponding to glass transition temperature were extracted from the fit of experimental data.
机译:报道了使用锂 - 壳聚糖作为电解质,碳和镍作为电极的清洁和可生物降解电池中产生的电压的测量。它们产生了少量的能量提供环境。通过电导测量来争论能量小。进行浓度和温度依赖性。在温度范围为258-323K的温度范围内,将这些测量从0.0005〜1.0moldm(-3)进行,并与甘油进行比较,是清洁粘性溶剂。目的是通过具有良好性能的干净和可生物降解的溶剂来替代目前使用的有毒溶剂。在低浓度和较高浓度下以低浓度和准晶格模型进行分析结果。使用Vogel-Tamman-Futcher方程还描述了电导率的温度依赖性。通过将其与Arrhenius理论进行比较,从实验数据的适合提取对应于对应于玻璃化转变温度的电导率无限稀释,激活能量和Vogel温度的非常有趣的参数。

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