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通过界面改性提高铝空气电池的性能

Boosting the Performance of Aluminum-Air Batteries by Interface Modification.

作者信息

Lu Yao, Zhu Yuan, Chen Zibo, Chen Chao, Li Xinyi, Yu Hailin, Peng Ke, Tian Zhongliang

机构信息

School of Metallurgy and Environment, Central South University, Changsha 410083, China.

BYD Company Limited (Headquarter), 3009 BYD Road, Pingshan District, Shenzhen 518118, China.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 24;16(29):37818-37828. doi: 10.1021/acsami.4c03156. Epub 2024 Jul 14.

Abstract

The large-scale application of aqueous Al-air batteries is highly restricted by the performance of Al anodes. The severe self-corrosion and hydrogen evolution of the Al anode in a concentrated alkaline electrolyte are the main reason. Here, aimed at relieving side reactions and enhancing the utilization of metal Al, we propose a hybrid electrolyte additive of 2-mercaptobenzothiazole (MBT) and ZnO to form a protective film at the anode/electrolyte interface and to decrease the hydrogen evolution active site. The strong absorption capability of MBT on the metal surface, along with the reduced Zn-containing layer, enables a compact protective film with high hydrogen evolution potential on the Al surface. With this benefit, the hydrogen evolution reaction (HER) inhibition efficiency is up to 83.58%, endowing a superior Al-air battery with an energy density of 2376.71 Wh kg under a current density of 25 mA cm. The conception of constructing a hybrid protective film on the metal surface not only favors the development of metal-air batteries but also facilitates metal corrosion protection.

摘要

铝空气水系电池的大规模应用受到铝阳极性能的高度限制。铝阳极在浓碱性电解液中的严重自腐蚀和析氢现象是主要原因。在此,为了缓解副反应并提高金属铝的利用率,我们提出一种由2-巯基苯并噻唑(MBT)和氧化锌组成的混合电解液添加剂,以在阳极/电解液界面形成保护膜并减少析氢活性位点。MBT对金属表面的强吸附能力,以及含锌层的减少,使得在铝表面形成具有高析氢电位的致密保护膜。得益于这一点,析氢反应(HER)的抑制效率高达83.58%,赋予了一种在25 mA cm电流密度下能量密度为2376.71 Wh kg的优异铝空气电池。在金属表面构建混合保护膜的概念不仅有利于金属空气电池的发展,也有助于金属腐蚀防护。

相似文献

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Boosting the Performance of Aluminum-Air Batteries by Interface Modification.通过界面改性提高铝空气电池的性能
ACS Appl Mater Interfaces. 2024 Jul 24;16(29):37818-37828. doi: 10.1021/acsami.4c03156. Epub 2024 Jul 14.

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