Chen Shipeng, Feng Li, Wang Xiaoji, Fan Yange, Ke Yubin, Hua Lin, Li Zheng, Hou Yimin, Xue Baoyu
Henan Institute of Chemistry, Henan Academy of Sciences, No. 56 Hongzhuan Road, Zhengzhou 450003, China.
Jiangsu Sunpower Co., Ltd., No 8 of Xingyuan Road, Huangqiao Industrical Park, Taixing 225400, China.
Gels. 2022 Mar 20;8(3):193. doi: 10.3390/gels8030193.
Owing to the potential of sodium as an alternative to lithium as charge carrier, increasing attention has been focused on the development of high-performance electrolytes for Na batteries in recent years. In this regard, gel-type electrolytes, which combine the outstanding ionic conductivity of liquid electrolytes and the safety of solid electrolytes, demonstrate immense application prospects. However, most gel electrolytes not only need a number of specific techniques for molding, but also typically suffer from breakage, leading to a short service life and severe safety issues. In this study, a supramolecular thixotropic ionogel electrolyte is proposed to address these problems. This thixotropic electrolyte is formed by the supramolecular self-assembly of D-gluconic acetal-based gelator (B8) in an ionic liquid solution of a Na salt, which exhibits moldability, a high ionic conductivity, and a rapid self-healing property. The ionogel electrolyte is chemically stable to Na and exhibits a good Na transference number. In addition, the self-assembly mechanism of B8 and thixotropic mechanism of ionogel are investigated. The safe, low-cost and multifunctional ionogel electrolyte developed herein supports the development of future high-performance Na batteries.
由于钠作为电荷载体替代锂的潜力,近年来,高性能钠电池电解质的开发受到了越来越多的关注。在这方面,凝胶型电解质结合了液体电解质出色的离子导电性和固体电解质的安全性,展现出巨大的应用前景。然而,大多数凝胶电解质不仅需要多种特定的成型技术,而且通常会出现破损问题,导致使用寿命短和严重的安全问题。在本研究中,提出了一种超分子触变离子凝胶电解质来解决这些问题。这种触变电解质是由基于D - 葡萄糖缩醛的凝胶剂(B8)在钠盐的离子液体溶液中通过超分子自组装形成的,具有可模塑性、高离子导电性和快速自愈性能。该离子凝胶电解质对钠具有化学稳定性,并表现出良好的钠迁移数。此外,还研究了B8的自组装机制和离子凝胶的触变机制。本文开发的安全、低成本且多功能的离子凝胶电解质为未来高性能钠电池的发展提供了支持。