Diverse Energy Storage Technologies for the Transition
*Corresponding Author: Dr. Katr脙颅n J脙鲁nsd脙鲁ttir, Dept. of Mechanical Engineering University of Iceland, Iceland, Email: k.jonsdottir@hi-demo.isReceived Date: Nov 01, 2025 / Accepted Date: Dec 01, 2025 / Published Date: Dec 01, 2025
Citation: Jónsdóttir DK (2025) Diverse Energy Storage Technologies for the Transition. Innov Ener Res 14: 492.DOI: 10.4172/2576-1463.1000492
Copyright: © 2025 Dr. Katrín Jónsdóttir 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.
Abstract
This review synthesizes recent advancements in energy storage technologies essential for a sustainable future. It covers flow
batteries, solid-state batteries, supercapacitors, hydrogen energy systems, thermal energy storage, mechanical energy storage, lithium
sulfur batteries, gravity-based storage, and beyond-lithium-ion chemistries. Key areas of innovation and ongoing challenges related
to performance, cost, and scalability are discussed, providing an overview of the landscape of energy storage solutions.

