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用于锌空气化学的多孔锌阳极设计

Porous Zinc Anode Design for Zn-air Chemistry.

作者信息

Liu Peiyuan, Ling Xiaofei, Zhong Cheng, Deng Yida, Han Xiaopeng, Hu Wenbin

机构信息

Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin, China.

Key Laboratory of Advanced Ceramics and Machining Technology, Ministry of Education, Tianjin University, Tianjin, China.

出版信息

Front Chem. 2019 Oct 1;7:656. doi: 10.3389/fchem.2019.00656. eCollection 2019.

Abstract

Zinc-air battery has drawn increasing attention from the whole world owing to its large energy capacity, stable working voltage, environmentally friendship, and low price. A special porous Zn with three-dimensional (3D) network frame structure, whose multistage average pore sizes can be tuned from 300 to 8 um, is synthesized in this work. It is found that there is a competition between Zn and for their reduction on the supports. And the decrease of Zn concentration and increase of concentration can facilitate the decrease of pore size. Potential-dynamic polarization was tested with 3-electrodes cell, aiming to characterize the electrochemical activity and corrosion properties of porous Zn and commercial Zn foil electrodes. After optimization, the porous Zn prepared with the parameters of 3 M NaBr, 1 M CHONH, and 0.01 M CHOZn shows the most negative corrosion potential of -1.45 V among all the samples, indicating the remarkable anti-corrosion property. Its discharge specific capacity is up to 812 mAh g. And discharge-charge test of the porous Zn shows an initial discharge platform of 1.33 V and an initial charge platform of 1.96 V, performing a small overpotential. What's more, the porous Zn exhibits a much longer cycle life than commercial Zn foil. Our work will not only shed light on the design and synthesis of other porous metal materials, but also further promote the development of Zn-based battery electrochemistry.

摘要

锌空气电池因其高能量容量、稳定的工作电压、环境友好和价格低廉而受到全球越来越多的关注。在这项工作中,合成了一种具有三维(3D)网络框架结构的特殊多孔锌,其多级平均孔径可在300至8微米之间调节。研究发现,锌和[此处原文可能缺失某种物质]在载体上的还原存在竞争。锌浓度的降低和[此处原文可能缺失某种物质]浓度的增加会促使孔径减小。使用三电极电池进行了电位动态极化测试,旨在表征多孔锌和商业锌箔电极的电化学活性和腐蚀性能。经过优化,在3 M NaBr、1 M CHONH和0.01 M CHOZn参数下制备的多孔锌在所有样品中显示出最负的腐蚀电位-1.45 V,表明其具有显著的抗腐蚀性能。其放电比容量高达812 mAh/g。多孔锌的充放电测试显示初始放电平台为1.33 V,初始充电平台为1.96 V,过电位较小。此外,多孔锌的循环寿命比商业锌箔长得多。我们的工作不仅将为其他多孔金属材料的设计和合成提供启示,还将进一步推动锌基电池电化学的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d681/6779696/5a439862d05e/fchem-07-00656-g0001.jpg

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