Abstract
Selenium-based alkali metal systems offer significant potential for surpassing commercial Li-ion systems in volumetric energy density (3,253 vs 1,000 mAh cm-3). However, challenges remain in electrode design, solid electrolyte interface stability, and mitigating active material dissolution. This review explores redox mechanisms, electrode architectures, and electrolyte strategies for enhancing performance, with a focus on Li, Na, K anodes and beyond. Advances in computational and experimental studies are discussed, highlighting key issues and future research directions to address scalability and improve stability, making Se-based batteries promising candidates for sustainable energy storage.
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CITATION STYLE
Park, J., Kim, H., Celeste, A., Park, H., Kansara, S., Zumpano, R., … Hwang, J. Y. (2025, May 9). Prospects of Alkali Metal-Se Batteries and Beyond: From Redox Mechanisms to Electrode Design. ACS Energy Letters. American Chemical Society. https://doi.org/10.1021/acsenergylett.5c00768
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