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用于可充电水系电池的织构化 Zn 阳极的稳定相化学。

Stable interphase chemistry of textured Zn anode for rechargeable aqueous batteries.

机构信息

Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.

School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Sci Bull (Beijing). 2022 Apr 15;67(7):716-724. doi: 10.1016/j.scib.2022.01.010. Epub 2022 Jan 17.

Abstract

Despite the advances of aqueous zinc (Zn) batteries as sustainable energy storage systems, their practical application remains challenging due to the issues of spontaneous corrosion and dendritic deposits at the Zn metal anode. In this work, conformal growth of zinc hydroxide sulfate (ZHS) with dominating (001) facet was realized on (002) plane-dominated Zn metal foil fabricated through a facile thermal annealing process. The ZHS possessed high Zn conductivity (16.9 mS cm) and low electronic conductivity (1.28 × 10 Ω cm), and acted as a heterogeneous and robust solid electrolyte interface (SEI) layer on metallic Zn electrode, which regulated the electrochemical Zn plating behavior and suppressed side reactions simultaneously. Moreover, low self-diffusion barrier along the (002) plane promoted the 2D diffusion and horizontal electrochemical plating of metallic Zn for (002)-textured Zn electrode. Consequently, the as-achieved Zn electrode exhibited remarkable cycling stability over 7000 cycles at 2 mA cm and 0.5 mAh cm with a low overpotential of 25 mV in symmetric cells. Pairing with a MnO cathode, the as-achieved Zn electrode achieved stable cell cycling with 92.7% capacity retention after 1000 cycles at 10 C with a remarkable average Coulombic efficiency of 99.9%.

摘要

尽管水性锌(Zn)电池作为可持续储能系统取得了进展,但由于 Zn 金属阳极的自发腐蚀和枝晶沉积问题,其实际应用仍具有挑战性。在这项工作中,通过简便的热退火工艺在(002)平面占主导地位的 Zn 金属箔上实现了具有主导(001)面的硫酸锌氢氧化物(ZHS)的共形生长。ZHS 具有高的 Zn 电导率(16.9 mS cm)和低的电子电导率(1.28×10 Ω cm),并且作为金属 Zn 电极上的非均相和坚固的固体电解质界面(SEI)层,同时调节电化学 Zn 电镀行为并抑制副反应。此外,(002)平面上沿低自扩散势垒促进了 Zn 金属的 2D 扩散和水平电化学电镀,从而得到具有(002)织构的 Zn 电极。因此,所获得的 Zn 电极在对称电池中以 2 mA cm 和 0.5 mAh cm 的电流密度下循环 7000 次以上,过电位低至 25 mV,表现出出色的循环稳定性。与 MnO 阴极配对,所获得的 Zn 电极在 10 C 下循环 1000 次后具有 92.7%的容量保持率,平均库仑效率高达 99.9%,实现了稳定的电池循环。

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