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ISSN: 2576-1463

Innovative Energy & Research
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Beyond Lithium-Ion: Next-Generation Battery Advancements Explored

Dr. Andrei Popescu*
Dept. of Physics University of Bucharest, Moldova
*Corresponding Author: Dr. Andrei Popescu, Dept. of Physics University of Bucharest, Moldova, Email: a.popescu@unibuc-demo.ro

Received Date: Jul 01, 2025 / Accepted Date: Jul 29, 2025 / Published Date: Jul 29, 2025

Citation: Popescu DA (2025) Beyond Lithium-Ion: Next-Generation Battery Advancements Explored. Innov Ener Res 14: 463.DOI: 10.4172/2576-1463.1000463

Copyright: © 2025 Dr. Andrei Popescu This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permitsunrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.

 
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Abstract

This research review explores diverse advancements in energystorage technologies. It covers solid-state electrolytes for enhanced
battery safety and energy density, and strategies to improve lithium-sulfur batteries. The development of anode materials for sodium
ion batteries, the potential of metal-air batteries, and the application of machine learning in materials design are discussed. Progress in
redox flow batteries for grid storage, challenges and opportunities in magnesium-ion batteries, and high-voltage cathodes for lithium
ion batteries are also detailed. Furthermore, interfacial engineering for electrode stability and the use of advanced characterization
techniques for understanding degradation mechanisms are presented, collectively contributing to the evolution of next-generation
battery systems.

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