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一种用于高性能柔性超级电容器的可生物降解凝胶电解质。

A biodegradable gel electrolyte for use in high-performance flexible supercapacitors.

机构信息

World Class University Program of Chemical Convergence for Energy & Environment, Institute of Chemical Processes, School of Chemical and Biological Engineering, Seoul National University , Seoul 151-742, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2015 Feb 18;7(6):3503-11. doi: 10.1021/am5070987. Epub 2015 Feb 4.

Abstract

Despite the significant advances in solid polymer electrolytes used for supercapacitors, intractable problems including poor ionic conductivity and low electrochemical performance limit the practical applications. Herein, we report a facile approach to synthesize a NaCl-agarose gel electrolyte for use in flexible supercapacitors. The as-prepared agarose hydrogel consists of a three-dimensional chemically interconnected agarose backbone and oriented interparticular submicropores filled with water. The interconnected agarose matrix acts as a framework that provides mechanical stability to the gel electrolyte and hierarchical porous networks for optimized ion transport. The developed pores with the water filler provide an efficient ionic pathway to the storage sites of electrode. With these properties, the gel electrolyte enables the supercapacitor to have a high specific capacitance of 286.9 F g(-1) and a high rate capability that is 80% of specific capacitance obtained in the case of a liquid electrolyte at 100 mV s(-1). In addition, attributed to the simple procedure and its components, the gel electrolyte is highly scalable, cost-effective, safe, and nontoxic. Thus, the developed gel electrolyte has the potential for use in various energy storage and delivery systems.

摘要

尽管用于超级电容器的固体聚合物电解质取得了重大进展,但包括离子电导率差和电化学性能低在内的棘手问题限制了其实际应用。在此,我们报告了一种简便的方法来合成用于柔性超级电容器的 NaCl-琼脂糖凝胶电解质。所制备的琼脂糖水凝胶由三维化学交联的琼脂糖骨架和充满水的定向颗粒亚微孔组成。互穿的琼脂糖基质充当框架,为凝胶电解质提供机械稳定性和优化离子传输的分级多孔网络。开发的具有水填充剂的孔提供了到电极存储位置的有效离子途径。具有这些特性,凝胶电解质使超级电容器具有 286.9 F g(-1)的高比电容和高倍率性能,在 100 mV s(-1)的情况下,比电容为液体电解质的 80%。此外,由于该方法简单且其组成成分,凝胶电解质具有高度可扩展性、成本效益高、安全且无毒。因此,开发的凝胶电解质具有在各种能量存储和输送系统中应用的潜力。

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