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基于浓水凝胶电解质的全柔性铵离子电池,性能增强。

A Full Flexible NH Ion Battery Based on the Concentrated Hydrogel Electrolyte for Enhanced Performance.

作者信息

Farai Kuchena Shelton, Wang Ying

机构信息

Department of Mechanical & Industrial Engineering, Louisiana State University, Baton Rouge, LA, 70803, USA.

出版信息

Chemistry. 2021 Nov 5;27(62):15450-15459. doi: 10.1002/chem.202102442. Epub 2021 Oct 5.

Abstract

Non-metal ammonium ( ) ions have recently been explored as effective charge carriers in battery systems due to their abundancy, light weight, small hydration shells in water. The research concerning the use of redox chemistry in batteries, particularly in flexible batteries, is still in its infancy. For the first time, we report a flexible full ion battery (AIB) composed of a concentrated hydrogel electrolyte sandwiched between NH V O  ⋅ 2.9H O nanobelts cathode and polyaniline (PANI) anode, for enhanced performance. The hydrogel electrolyte is simply synthesized by using ammonium sulfate, xanthan gum and water. As a reference, the AIB based on the liquid aqueous electrolyte is prepared first, which exhibits a capacity of 121 mAh g and a capacity retention of 95 % after 400 cycles at a specific current of 0.1 A g . On the other hand, the simple synthesis of the hydrogel electrolyte allows us to facilely tune and optimize the salt contents in the electrolyte, to maximize the ionic conductivity, transport kinetics, mechanical characteristics, and consequently the battery performance. It is found that the flexible battery based on the hydrogel electrolyte prepared from 3 M ammonium sulfate solution shows the best electrochemical performance, i. e., a capacity of 60 mAh g while maintaining a capacity retention of 88 % after 250 cycles at a specific current of 0.1 A g . Moreover, the flexible AIB retains excellent electrochemical performance when bent at different angles, demonstrating remarkable mechanical strength and flexibility. Therefore, this study sheds new light on the utilization of concentrated hydrogel electrolyte in the AIB chemistry, for developments of novel electrochemical energy storage technology with high safety and low cost.

摘要

由于非金属铵( )离子储量丰富、重量轻、在水中的水化壳小,近年来已被探索作为电池系统中有效的电荷载体。关于在电池,特别是柔性电池中使用 氧化还原化学的研究仍处于起步阶段。我们首次报道了一种柔性全 离子电池(AIB),它由夹在NH V O  ⋅ 2.9H O纳米带阴极和聚苯胺(PANI)阳极之间的浓缩水凝胶电解质组成,以提高性能。水凝胶电解质通过使用硫酸铵、黄原胶和水简单合成。作为参考,首先制备了基于液体水性电解质的AIB,在0.1 A g 的特定电流下,其在400次循环后表现出121 mAh g 的容量和95%的容量保持率。另一方面,水凝胶电解质的简单合成使我们能够轻松调节和优化电解质中的盐含量,以最大化离子电导率、传输动力学、机械特性,从而提高电池性能。发现基于由3 M硫酸铵溶液制备的水凝胶电解质的柔性电池表现出最佳的电化学性能,即在0.1 A g 的特定电流下,250次循环后容量为60 mAh g ,同时保持88%的容量保持率。此外,柔性AIB在不同角度弯曲时仍保持优异的电化学性能,展现出卓越的机械强度和柔韧性。因此,本研究为在AIB化学中利用浓缩水凝胶电解质提供了新的思路,有助于开发具有高安全性和低成本的新型电化学储能技术。

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