Abstract
Abstract
The development of efficient storage systems is one of the keys to the success of the energy transition. There are many ways to store energy, but among them, electrochemical storage is particularly valuable because it can store electrons produced by renewable energies with a very good efficiency. However, the solutions currently available on the market remain unsuitable in terms of storage capacity, recharging kinetics, durability, and cost. Technological breakthroughs are therefore expected to meet the growing need for energy storage. Within the framework of the Hydrogen Technology Collaboration Program—H2TCP Task-40, IEA’s expert researchers have developed innovative materials based on hydrides (metallic or complex) offering new solutions in the field of solid electrolytes and anodes for alkaline and ionic batteries. This review presents the state of the art of research in this field, from the most fundamental aspects to the applications in battery prototypes.
Funder
U.S. Department of Energy Office of Science User Facility
Argonne Leadership Computing Facility
U.S. Department of Energy
Toyota Motor Corporation
Danish Ministry of Higher Education and Science
Independent research fund Denmark for technology and production
NWO
Carlsberg Foundation
European Commission
Australian Research Council
Subject
General Earth and Planetary Sciences,General Environmental Science
Cited by
32 articles.
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