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用于可充电碱性锌-镍氢氧化物和锌空气电池的相变定制纳米多孔锌金属电极。

Phase-transition tailored nanoporous zinc metal electrodes for rechargeable alkaline zinc-nickel oxide hydroxide and zinc-air batteries.

作者信息

Li Liangyu, Tsang Yung Chak Anson, Xiao Diwen, Zhu Guoyin, Zhi Chunyi, Chen Qing

机构信息

Department of Mechanical and Aerospace Engineering, the Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.

The Energy Institute, the Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, China.

出版信息

Nat Commun. 2022 May 24;13(1):2870. doi: 10.1038/s41467-022-30616-w.

Abstract

Secondary alkaline Zn batteries are cost-effective, safe, and energy-dense devices, but they are limited in rechargeability. Their short cycle life is caused by the transition between metallic Zn and ZnO, whose differences in electronic conductivity, chemical reactivity, and morphology undermine uniform electrochemical reactions and electrode structural stability. To circumvent these issues, here we propose an electrode design with bi-continuous metallic zinc nanoporous structures capable of stabilizing the electrochemical transition between metallic Zn and ZnO. In particular, via in situ optical microscopy and electrochemical impedance measurements, we demonstrate the kinetics-controlled structural evolution of Zn and ZnO. We also tested the electrochemical energy storage performance of the nanoporous zinc electrodes in alkaline zinc-nickel oxide hydroxide (NiOOH) and zinc-air (using Pt/C/IrO-based air-electrodes) coin cell configurations. The Zn | |NiOOH cell delivers an areal capacity of 30 mAh/cm at 60% depth of discharging for 160 cycles, and the Zn | |Pt/C/IrO air cell demonstrates 80-hour stable operation in lean electrolyte condition.

摘要

二次碱性锌电池是具有成本效益、安全且能量密度高的装置,但它们在可充电性方面存在局限性。它们较短的循环寿命是由金属锌和氧化锌之间的转变引起的,其电子导电性、化学反应性和形态的差异破坏了均匀的电化学反应和电极结构稳定性。为了解决这些问题,我们在此提出一种具有双连续金属锌纳米多孔结构的电极设计,该结构能够稳定金属锌和氧化锌之间的电化学转变。特别是,通过原位光学显微镜和电化学阻抗测量,我们展示了锌和氧化锌的动力学控制结构演变。我们还在碱性锌 - 氢氧化镍氧化物(NiOOH)和锌 - 空气(使用基于Pt/C/IrO的空气电极)扣式电池配置中测试了纳米多孔锌电极的电化学储能性能。Zn||NiOOH电池在60%放电深度下可提供30 mAh/cm²的面积容量,循环160次,并且Zn||Pt/C/IrO空气电池在贫电解质条件下展示了80小时的稳定运行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d92d/9130287/7508135d0720/41467_2022_30616_Fig1_HTML.jpg

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