A review of the Al-gas batteries and perspectives for a “Real” Al-air battery

IF 8.1 2区 工程技术 Q1 CHEMISTRY, PHYSICAL Journal of Power Sources Pub Date : 2023-07-11 DOI:10.1016/j.jpowsour.2023.233375
Zhengying Zhang, Lilong Xiong, Shixin Wang, Yuehong Xie, Wenzhi You, Xianfeng Du
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引用次数: 2

Abstract

Aluminum-gas battery is a special kind of fuel cell that converts chemical energy directly into electrical energy, possessing the advantages of high specific energy density, higher safety, and low cost. Different types of Al-gas batteries are classified by cathode active gases, such as Al–O2, Al–N2, and Al–CO2 batteries, reducing a single gas respectively. Up to date Al-gas batteries using multi-component as cathode active gases are rarely reported, even the intensively researched Al-air batteries actually only reduce O2 from the air. Coincidentally, N2 and CO2 are also the main components in the air, it is an attractive work to discuss and research several gases together as cathode active gas. This review tries to illustrate the electrode structure, catalytic principle, and electrolyte composition of different types of Al-gas batteries, explore the differences and connections between different active gases on diffusion, reduction, and transition, prospecting to construct a real aluminum-air battery in the future.

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Al-gas电池综述及“真正的”Al-air电池展望
铝气电池是一种将化学能直接转化为电能的特殊燃料电池,具有比能密度高、安全性高、成本低等优点。不同类型的铝气电池按正极活性气体分类,如Al-O2、Al-N2和Al-CO2电池,分别还原一种气体。目前以多组分作为正极活性气体的Al-air电池鲜有报道,即使是研究深入的Al-air电池实际上也只是从空气中还原O2。巧合的是,N2和CO2也是空气中的主要成分,将几种气体共同作为阴极活性气体进行讨论和研究是一项有吸引力的工作。本文阐述了不同类型铝气电池的电极结构、催化原理和电解液组成,探讨了不同活性气体在扩散、还原、过渡等方面的差异和联系,展望了未来构建真正的铝气电池的前景。
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来源期刊
Journal of Power Sources
Journal of Power Sources 工程技术-电化学
CiteScore
16.40
自引率
6.50%
发文量
1249
审稿时长
36 days
期刊介绍: The Journal of Power Sources is a publication catering to researchers and technologists interested in various aspects of the science, technology, and applications of electrochemical power sources. It covers original research and reviews on primary and secondary batteries, fuel cells, supercapacitors, and photo-electrochemical cells. Topics considered include the research, development and applications of nanomaterials and novel componentry for these devices. Examples of applications of these electrochemical power sources include: • Portable electronics • Electric and Hybrid Electric Vehicles • Uninterruptible Power Supply (UPS) systems • Storage of renewable energy • Satellites and deep space probes • Boats and ships, drones and aircrafts • Wearable energy storage systems
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