School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.
Department of Material Science and Engineering, National University of Singapore, Singapore, 117574, Singapore.
Adv Mater. 2018 Aug;30(32):e1803181. doi: 10.1002/adma.201803181. Epub 2018 Jul 2.
Zinc-ion batteries are under current research focus because of their uniqueness in low cost and high safety. However, it is still desirable to improve the rate performance by improving the Zn (de)intercalation kinetics and long-cycle stability by eliminating the dendrite formation problem. Herein, the first paradigm of a high-rate and ultrastable flexible quasi-solid-state zinc-ion battery is constructed from a novel 2D ultrathin layered zinc orthovanadate array cathode, a Zn array anode supported by a conductive porous graphene foam, and a gel electrolyte. The nanoarray structure for both electrodes assures the high rate capability and alleviates the dendrite growth. The flexible Zn-ion battery has a depth of discharge of ≈100% for the cathode and 66% for the anode, and delivers an impressive high-rate of 50 C (discharge in 60 s), long-term durability of 2000 cycles at 20 C, and unprecedented energy density ≈115 Wh kg , together with a peak power density ≈5.1 kW kg (calculation includes masses of cathode, anode, and current collectors). First principles calculations and quantitative kinetics analysis show that the high-rate and stable properties are correlated with the 2D fast ion-migration pathways and the introduced intercalation pseudocapacitance.
锌离子电池因其低成本和高安全性而成为当前研究的焦点。然而,通过改进 Zn(脱)嵌入动力学和长循环稳定性来消除枝晶形成问题,仍然希望提高其倍率性能。在此,通过构建一种新型的 2D 超薄层状锌钒氧化物阵列阴极、由导电多孔石墨烯泡沫支撑的 Zn 阵列阳极和凝胶电解质,首次构建了一种高倍率和超稳定的柔性准固态锌离子电池。两个电极的纳米阵列结构确保了高倍率性能,并缓解了枝晶生长。柔性锌离子电池的阴极深度放电约为 100%,阳极深度放电约为 66%,在 50 C(60 秒放电)的高倍率下具有令人印象深刻的循环性能,在 20 C 下循环 2000 次的长期耐久性,以及前所未有的约 115 Wh kg 的能量密度,峰值功率密度约为 5.1 kW kg(计算包括阴极、阳极和集流器的质量)。第一性原理计算和定量动力学分析表明,高倍率和稳定性能与 2D 快速离子迁移途径和引入的嵌入赝电容有关。