Challenges and strategies of low‐cost aluminum anodes for high‐performance Al‐based batteries

M Jiang, C Fu, P Meng, J Ren, J Wang, J Bu… - Advanced …, 2022 - Wiley Online Library
The ever‐growing market of electric vehicles and the upcoming grid‐scale storage systems
have stimulated the fast growth of renewable energy storage technologies. Aluminum …

Aluminum-air batteries: A review of alloys, electrolytes and design

R Buckingham, T Asset, P Atanassov - Journal of Power Sources, 2021 - Elsevier
High theoretical energy densities of metal battery anode materials have motivated research
in this area for several decades. Aluminum in an Al-air battery (AAB) is attractive due to its …

Aluminum–air batteries: A viability review

P Goel, D Dobhal, RC Sharma - Journal of Energy Storage, 2020 - Elsevier
Abstract Aluminum–air (Al–air) batteries, both primary and secondary, are promising
candidates for their use as electric batteries to power electric and electronic devices, utility …

Recent advances and challenges in divalent and multivalent metal electrodes for metal–air batteries

Y Sun, X Liu, Y Jiang, J Li, J Ding, W Hu… - Journal of Materials …, 2019 - pubs.rsc.org
Metal–air batteries (MABs), which possess exceptionally high energy density and exhibit
other ideal features such as low cost, environmental benignity and safety, are regarded as …

Ionic liquid electrolytes for next-generation electrochemical energy devices

Y Zheng, D Wang, S Kaushik, S Zhang, T Wada… - EnergyChem, 2022 - Elsevier
The development of future energy devices that exhibit high safety, sustainability, and high
energy densities to replace the currently dominant lithium-ion batteries has gained …

Advanced technologies for high‐energy aluminum–air batteries

J Ryu, M Park, J Cho - Advanced Materials, 2019 - Wiley Online Library
Aluminum–air batteries are considered as next‐generation batteries owing to their high
energy density with the abundant reserves, low cost, and lightweight of aluminum. However …