Song Zhishuang, Ding Jia, Liu Bin, Liu Xiaorui, Han Xiaopeng, Deng Yida, Hu Wenbin, Zhong Cheng
Key Laboratory of Advanced Ceramics and Machining Technology (Ministry of Education), School of Materials Science and Engineering, Tianjin University, Tianjin, 300072, China.
Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin University, Tianjin, 300072, China.
Adv Mater. 2020 Jun;32(22):e1908127. doi: 10.1002/adma.201908127. Epub 2020 Apr 17.
Tremendous effort have recently been made in optimizing the air catalysts of flexible zinc-air batteries (ZABs). Unfortunately, the bottleneck factors in electrolytes that largely limit the working life and energy efficiency of ZABs have long been relatively neglected. Herein, an alkaline gel polymer electrolyte (GPE) is fabricated through multiple crosslinking reactions among poly(vinyl alcohol) (PVA), poly(acrylic acid), and graphene oxide followed by intense uptake of an alkali and the KI reaction modifier. The prepared GPE exhibits essentially improved properties compared to traditional PVA gel electrolyte in terms of mechanical strength, ionic conductivity, and water retention capability. In addition, the introduced reaction modifier I in the GPE changes the path of the conventional oxygen evolution reaction, leading to a more thermodynamically favorable path. The optimized GPE enables flexible ZABs exhibiting an exceptionally low charge potential of 1.69 V, a long cycling time of 200 h, a high energy efficiency of 73%, and rugged reliability under different extreme working conditions. Moreover, the successful integration of ZABs in a variety of real wearable electronic devices demonstrates their excellent practicability as flexible power sources.
最近在优化柔性锌空气电池(ZABs)的空气催化剂方面付出了巨大努力。不幸的是,电解质中的瓶颈因素长期以来相对被忽视,这些因素在很大程度上限制了ZABs的使用寿命和能量效率。在此,通过聚乙烯醇(PVA)、聚丙烯酸和氧化石墨烯之间的多次交联反应,随后大量吸收碱和KI反应改性剂,制备了一种碱性凝胶聚合物电解质(GPE)。与传统的PVA凝胶电解质相比,所制备的GPE在机械强度、离子电导率和保水能力方面表现出显著改善的性能。此外,GPE中引入的反应改性剂I改变了传统析氧反应的路径,导致了一条热力学上更有利的路径。优化后的GPE使柔性ZABs具有1.69 V的极低充电电位、200 h的长循环时间、73%的高能量效率以及在不同极端工作条件下的坚固可靠性。此外,ZABs成功集成到各种实际可穿戴电子设备中,证明了它们作为柔性电源的出色实用性。