Electrochemical Corrosion and Safety Hazards in Sustainable Batteries:Corrosion Mechanisms,Safety Challenges,and ProtectionOA
The swift transition to sustainable energy has heightened demand for highperformance,safe,and environmentally responsible battery technologies.Zn-,Mg-,Na-,Al-,Fe-,organic,and bio-based systems offer several advantages over traditional resourceintensive and toxic alternatives.However,their practical implications are significantly challenged by their susceptibility to electrochemical corrosion,which adversely affects their efficiency,longevity,safety,recyclability,and reversibility.Corrosion is one of the most significant and persistent barriers to the development of next-generation energy storage systems.This review comprehensively presents unified mechanisms of corrosion across diverse sustainable battery systems,with a detailed account of pitting,uniform,galvanic,intergranular,and passivation-related degradation pathways.The article presents a unique comparison of the degradation mechanisms of Zn,Al,Mg,and other anodes in different electrolytes.Corrosion mitigation strategies,including surface passivation,surface engineering,alloying,use of surfactants and polymer-based films,ionic liquids,deep eutectic solvents,metal–organic frameworks,heterocycles,and bio-based multifunctional corrosion inhibitors,have been comprehensively surveyed.These inhibitors suppress the increase in cycle life,achieving inhibition efficiencies of over 90%.Lastly,the review highlights the design of molecular-level corrosion inhibitors,interfacial engineering,real-time corrosion testing,advanced electrolytes,and forward-looking directions,all of which are essential to the development of sustainable,stable energy storage systems.
Chandrabhan Verma;Imad Barsoum;Akram Alfantazi;Kyong Yop Rhee
Department of Chemical and Petroleum Engineering,Khalifa University of Science and Technology,P.O.Box 127788,Abu Dhabi,United Arab Emirates Emirates Nuclear Technology Center(ENTC),Khalifa University,12788 Abu Dhabi,United Arab EmiratesEmirates Nuclear Technology Center(ENTC),Khalifa University,12788 Abu Dhabi,United Arab Emirates Department of Mechanical and Nuclear Engineering,Khalifa University of Science and Technology,Abu Dhabi 12788,United Arab EmiratesDepartment of Chemical and Petroleum Engineering,Khalifa University of Science and Technology,P.O.Box 127788,Abu Dhabi,United Arab EmiratesDepartment of Mechanical Engineering,College of Engineering,Kyung Hee University,Yongin 445‑701,South Korea
信息技术与安全科学
Electrochemical corrosionSustainable energy storageMetal-anode batteriesInterfacial engineeringCorrosion inhibitors
《Nano-Micro Letters》 2026 (9)
P.1035-1125,91
Khalifa University of Science and Technology for providing financial support。
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