Key Laboratory of Advanced Ceramics and Machining Technology (Ministry of Education), School of Materials Science and Engineering, Tianjin University, Tianjin, 300072, China.
Joint School of National University of Singapore and Tianjin University, International Campus of Tianjin University, Binhai New City, Fuzhou, 350207, China.
Adv Mater. 2023 Feb;35(7):e2209290. doi: 10.1002/adma.202209290. Epub 2022 Dec 16.
Increasing pursuit of next-generation wearable electronics has put forward the demand of reliable energy devices with high flexibility, durability, and enhanced electrochemical performances. Flexible aqueous zinc-air batteries (FAZABs) have attracted great interests owing to the high energy density, safety, and environmental benignity, for which quasi-solid-state gel polymer electrolytes (QSGPEs) are state-of-the-art electrolytes with high ionic conductivity, flexibility, and resistance to leakage problems of traditional liquid electrolytes. Compared to commonly used PVA-KOH electrolyte with poor electrolyte retention capability and cycling stability, a new type of sulfonate functionalized nanocomposite QSGPE is applied in FAZABs with high ionic conductivity, strong alkaline tolerance, and high zinc anode stability. Notably, the existence of (1) strong anionic sulfonate groups of QSGPEs, contributing to the exposure of preferred Zn (002) plane that is more resistant to zinc dendrite formation, and (2) nano-attapulgite electrolyte additives, beneficial for the enhancement of ionic conductivity, electrolyte uptake, and retention capability, endows a ultralong cycling life of 450 h for the fabricated FAZAB. Furthermore, flexible energy belts and knittable energy wires fabricated with a series/parallel unit of several FAZABs can be used to power various wearable electronics.
对下一代可穿戴电子产品的日益追求提出了对具有高灵活性、耐用性和增强电化学性能的可靠能源设备的需求。柔性水系锌空气电池(FAZAB)由于具有高能量密度、安全性和环境友好性而引起了极大的兴趣,为此,准固态凝胶聚合物电解质(QSGPE)是一种具有高离子电导率、柔韧性和抗传统液体电解质泄漏问题的最新电解质。与通常使用的 PVA-KOH 电解质相比,后者具有较差的电解质保持能力和循环稳定性,新型磺酸盐功能化纳米复合 QSGPE 应用于 FAZAB 中,具有高离子电导率、强耐碱性和高锌阳极稳定性。值得注意的是,(1)QSGPE 中的强阴离子磺酸盐基团有助于暴露出更能抵抗锌枝晶形成的首选 Zn(002)面,(2)纳米凹凸棒土电解质添加剂有利于提高离子电导率、电解质吸收和保持能力,赋予所制备的 FAZAB 超长的 450 小时循环寿命。此外,使用几个 FAZAB 的串联/并联单元制造的柔性能源带和可编织能源线可用于为各种可穿戴电子产品供电。