Song Ziyang, Miao Ling, Lv Yaokang, Gan Lihua, Liu Mingxian
Shanghai Key Lab of Chemical Assessment and Sustainability, School of Chemical Science and Engineering, Tongji University, Shanghai, 200092, P. R. China.
College of Chemical Engineering, Zhejiang University of Technology, Hangzhou, 310014, P. R. China.
Adv Sci (Weinh). 2024 May;11(19):e2310319. doi: 10.1002/advs.202310319. Epub 2024 Mar 13.
Zinc-organic batteries (ZOBs) are receiving widespread attention as up-and-coming energy-storage systems due to their sustainability, operational safety and low cost. Charge carrier is one of the critical factors affecting the redox kinetics and electrochemical performances of ZOBs. Compared with conventional large-sized and sluggish Zn storage, non-metallic charge carriers with small hydrated size and light weight show accelerated interfacial dehydration and fast reaction kinetics, enabling superior electrochemical metrics for ZOBs. Thus, it is valuable and ongoing works to build better ZOBs with non-metallic ion storage. In this review, versatile non-metallic cationic (H, NH ) and anionic (Cl, OH, CFSO , SO ) charge carriers of ZOBs are first categorized with a brief comparison of their respective physicochemical properties and chemical interactions with redox-active organic materials. Furthermore, this work highlights the implementation effectiveness of non-metallic ions in ZOBs, giving insights into the impact of ion types on the metrics (capacity, rate capability, operation voltage, and cycle life) of organic cathodes. Finally, the challenges and perspectives of non-metal-ion-based ZOBs are outlined to guild the future development of next-generation energy communities.
锌有机电池(ZOBs)作为新兴的储能系统正受到广泛关注,因其具有可持续性、操作安全性和低成本。电荷载体是影响ZOBs氧化还原动力学和电化学性能的关键因素之一。与传统的大尺寸且反应迟缓的锌存储方式相比,水合尺寸小且重量轻的非金属电荷载体表现出加速的界面脱水和快速的反应动力学,从而为ZOBs带来卓越的电化学指标。因此,构建具有非金属离子存储功能的更好的ZOBs是有价值且正在进行的工作。在本综述中,首先对ZOBs通用的非金属阳离子(H、NH )和阴离子(Cl、OH、CFSO 、SO )电荷载体进行了分类,并简要比较了它们各自的物理化学性质以及与氧化还原活性有机材料的化学相互作用。此外,这项工作突出了非金属离子在ZOBs中的实施效果,深入探讨了离子类型对有机阴极指标(容量、倍率性能、工作电压和循环寿命)的影响。最后,概述了基于非金属离子的ZOBs面临的挑战和前景,以指导下一代能源社区的未来发展。