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基于乙酰胺和高氯酸锌的环境温度、锌离子传导、二元熔融电解质:在可充电锌电池中的应用。

Ambient temperature, zinc ion-conducting, binary molten electrolyte based on acetamide and zinc perchlorate: Application in rechargeable zinc batteries.

机构信息

Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560 012, India.

出版信息

J Colloid Interface Sci. 2010 Feb 15;342(2):505-12. doi: 10.1016/j.jcis.2009.10.034. Epub 2009 Oct 21.

Abstract

Binary room temperature molten electrolytes based on acetamide and zinc perchlorate have been prepared and characterized. The electrolytes are found to be highly zinc ion-conducting with very favorable physicochemical and electrochemical characteristics. Raman and infrared spectroscopic studies reveal the presence of large free-ion concentration in the molten liquid. This is corroborated by the high conductivity observed under ambient conditions. Rechargeable zinc batteries assembled using gamma-MnO(2) as the cathode and Zn as the anode with the molten electrolyte show high discharge capacities over several cycles, indicating excellent reversibility. This unique class of acetamide-based, room temperature molten liquids may become viable and green alternative electrolytes for rechargeable zinc-based secondary batteries.

摘要

已制备并表征了基于乙酰胺和高氯酸锌的双室温熔融电解质。研究发现,这些电解质具有非常高的锌离子电导率以及优良的物理化学和电化学特性。拉曼和红外光谱研究表明,熔融液体中存在大量的自由离子浓度。这一点得到了在环境条件下观察到的高电导率的证实。使用γ-MnO2 作为正极和 Zn 作为负极组装的可充电锌电池,采用熔融电解质,在几个循环中显示出高放电容量,表明具有极好的可逆性。这种独特的乙酰胺基室温熔融液体可能成为可充电锌基二次电池的可行且环保的替代电解质。

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