Abstract
Aluminum–air batteries are highly promising energy storage systems due to their high theoretical energy density, environmental friendliness, and cost-effectiveness. However, the self-corrosion of aluminum anodes in alkaline electrolytes remains a critical issue that significantly limits their practical application and commercialization. This review paper comprehensively examined various advanced strategies aimed at suppressing the self-corrosion of anodes in Al–air batteries. We summarized the fundamental principles of these approaches, their advantages and disadvantages, and provided an in-depth analysis of their effectiveness, supported by experimental and theoretical evidence. Specifically, this review systematically analyzes six major strategies for suppressing anode self-corrosion: anode alloying, electrolyte additives, novel electrolytes, anode surface treatment, battery structural design, and computer-aided investigation. Furthermore, we proposed the challenges and future research directions in this field. Overall, this review aimed to offer valuable insights and guidance for the development of high-performance, long-lasting Al–air batteries.
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CITATION STYLE
Li, S., Liu, Z., Wei, X., Wu, H., Mei, H., & Liu, J. (2025, July 1). Advanced Strategies for Suppressing the Self-Corrosion of the Anode in Al–Air Batteries. Metals. Multidisciplinary Digital Publishing Institute (MDPI). https://doi.org/10.3390/met15070760
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