Xu Luo, Li Yan, Fu Jianxue, Shi Luwei, Li Chunjie, Ma Ruguang
School of Materials Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.
Nanomaterials (Basel). 2024 Oct 13;14(20):1645. doi: 10.3390/nano14201645.
Zinc-ion batteries (ZIBs) emerge as leading candidates for a flexible energy storage system, distinguished by high capacity, affordability, and inherent safety. The integration of hydrogel electrolytes, particularly those with saturated aqueous solvents, has significantly enhanced the electrochemical performance of ZIBs while preserving their essential flexibility. Nonetheless, challenges in electrochemical performance under specific conditions highlight the nascent stage of this technology, with numerous technical hurdles awaiting resolution. Addressing these challenges, recent investigations have leveraged the unique properties of cellulose hydrogel-namely, its exceptional toughness, tensile strength, extreme temperature resilience, stimulus responsiveness, and self-healing capabilities-to innovate multifunctional flexible zinc-based batteries. This paper conducts a comprehensive review of the physicochemical attributes of cellulose hydrogel electrolytes within ZIBs. We thoroughly analyze their performance under diverse environmental conditions, offering insights into the current landscape and their future potential. By examining these aspects, we aim to underscore the developmental prospects and the challenges that lie ahead for hydrogel electrolytes in ZIBs, paving the way for further advancement in this promising field.
锌离子电池(ZIBs)成为柔性储能系统的主要候选者,其特点是高容量、价格亲民且本质安全。水凝胶电解质的集成,特别是那些具有饱和水性溶剂的电解质,在保持其基本柔韧性的同时,显著提高了ZIBs的电化学性能。尽管如此,特定条件下电化学性能方面的挑战凸显了该技术仍处于初期阶段,还有许多技术障碍有待解决。为应对这些挑战,最近的研究利用了纤维素水凝胶的独特性能,即其出色的韧性、拉伸强度、极端温度弹性、刺激响应性和自愈能力,来创新多功能柔性锌基电池。本文对ZIBs中纤维素水凝胶电解质的物理化学属性进行了全面综述。我们深入分析了它们在不同环境条件下的性能,洞察当前的情况及其未来潜力。通过研究这些方面,我们旨在强调ZIBs中水凝胶电解质的发展前景和面临的挑战,为这一充满前景的领域的进一步发展铺平道路。