Li Siwen, Fan Xiayue, Liu Xiaorui, Zhao Zequan, Xu Wen, Wu Zhanyao, Feng Zhonghou, Zhong Cheng, Hu Wenbin
Key Laboratory of Advanced Ceramics and Machining Technology (Ministry of Education), Tianjin University, Tianjin 300072, China.
Sen Ke Chuang Neng (Tianjin) New Energy Technology Co., Ltd, Tianjin 300381, China.
ACS Appl Mater Interfaces. 2022 May 25;14(20):22847-22857. doi: 10.1021/acsami.1c20999. Epub 2022 Feb 1.
Because of their high theoretical value of volumetric energy density, excellent rate performance, and high level of safety, zinc-nickel batteries (ZNBs) show potential applications for uninterrupted power supply (UPS) systems. However, despite all the advantages of ZNBs, the commercial application of ZNBs has been prevented by their short lifetime caused by the shape change, the corrosion, and the dendrite formation of the Zn anode. In this work, we proposed a flexible and durable potassium polyacrylate (PAAK)-KOH gel polymer electrolyte (GPE) prepared in a very simple way to solve the above problems of the Zn anode. The obtained highly porous gel electrolyte showed higher water retention, satisfying ionic conductivity (0.918 S cm), and a broad electrochemical stable voltage window. By providing a stable and homogeneous electrode/electrolyte interface for the Zn anode, the gel electrolyte can inhibit the uneven deposition and dendrite formation. As a result, the gel electrolyte greatly prolonged the cycling life to 776 h. In addition, because of the considerably batter corrosion resistance of the Zn anode in the PAAK-KOH GPE, the ZNB with gel electrolyte also exhibited a superior shelf life of more than 431 h and a superior cycling performance under float charge for more than 400 h at 60 °C. This work demonstrates that the gel electrolyte with a simple preparation method is suitable for large-scale practical production and can be successfully used in Zn-Ni batteries as an electrolyte exhibiting excellent performance.
由于具有较高的理论体积能量密度、出色的倍率性能和较高的安全水平,锌镍电池(ZNBs)在不间断电源(UPS)系统中显示出潜在的应用前景。然而,尽管ZNBs具有诸多优点,但其商业应用却因锌阳极的形状变化、腐蚀和枝晶形成导致的寿命短而受到阻碍。在这项工作中,我们提出了一种通过非常简单的方法制备的柔性耐用聚丙烯酸钾(PAAK)-氢氧化钾凝胶聚合物电解质(GPE),以解决锌阳极的上述问题。所获得的高度多孔凝胶电解质具有更高的保水性、令人满意的离子电导率(0.918 S cm)和较宽的电化学稳定电压窗口。通过为锌阳极提供稳定且均匀的电极/电解质界面,凝胶电解质可以抑制不均匀沉积和枝晶形成。结果,凝胶电解质将循环寿命大大延长至776小时。此外,由于锌阳极在PAAK-KOH GPE中具有相当好的抗腐蚀性能,带有凝胶电解质的ZNB还表现出超过431小时的优异储存寿命以及在60°C下浮充超过400小时的优异循环性能。这项工作表明,制备方法简单的凝胶电解质适用于大规模实际生产,并且可以作为具有优异性能的电解质成功应用于锌镍电池中。