Ghosh Meena, Dilwale Swati, Vijayakumar Vidyanand, Kurungot Sreekumar
Physical and Materials Chemistry Division, CSIR-National Chemical Laboratory, Pune, 411008 Maharashtra, India.
Academy of Scientific and Innovative Research, Sector 19, Kamla Nehru Nagar, Ghaziabad, 201002 Uttar Pradesh, India.
ACS Appl Mater Interfaces. 2020 Oct 28;12(43):48542-48552. doi: 10.1021/acsami.0c13221. Epub 2020 Oct 19.
Rechargeable aqueous zinc-metal batteries (ZMBs) are considered as potential energy storage devices for stationary applications. Despite the significant developments in recent years, the performance of ZMBs is still limited due to the lack of advanced cathode materials delivering high capacity and long cycle life. In this work, we report a low-temperature and scalable synthesis method following a surfactant-assisted route for preparing manganese-doped hydrated vanadium oxide (MnHVO-30) and its application as the cathode material for ZMB. The as-prepared material possesses a porous architecture and expanded interlayer spacing. Therefore, the MnHVO-30 cathode offers fast and reversible insertion of Zn ions during the charge/discharge process and delivers 341 mAh g capacity at 0.1 A g. Moreover, the MnHVO-30||Zn cell retains 82% of its initial capacity over 1200 stability cycles, which is higher compared to that of the undoped system. Besides, a quasi-solid-state home-made pouch cell with an area of 3.3 × 1.6 cm and 3.6 mg cm loading is assembled, achieving 115 mAh g capacity over 100 stability cycles. Therefore, this work provides an easy and attractive way for preparing efficient cathode materials for aqueous ZMBs.
可充电水系锌金属电池(ZMBs)被认为是适用于固定应用的潜在储能装置。尽管近年来取得了重大进展,但由于缺乏能够提供高容量和长循环寿命的先进阴极材料,ZMBs的性能仍然受到限制。在这项工作中,我们报告了一种低温且可扩展的合成方法,该方法采用表面活性剂辅助路线来制备锰掺杂的水合氧化钒(MnHVO-30)及其作为ZMB阴极材料的应用。所制备的材料具有多孔结构和扩大的层间距。因此,MnHVO-30阴极在充电/放电过程中提供锌离子的快速和可逆插入,并在0.1 A g下提供341 mAh g的容量。此外,MnHVO-30||Zn电池在1200次稳定性循环中保持其初始容量的82%,与未掺杂体系相比更高。此外,组装了一个面积为3.3×1.6 cm且负载量为3.6 mg cm的准固态自制软包电池,在100次稳定性循环中实现了115 mAh g的容量。因此,这项工作为制备用于水系ZMBs的高效阴极材料提供了一种简便且有吸引力的方法。