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Metal Hydrides for Hydrogen-Based Energy Storage, Volume 1. Fundamentals. Woodhead Publishing Series in Electronic and Optical Materials

  • Book

  • December 2025
  • Elsevier Science and Technology
  • ID: 6042237

Metal Hydrides for Hydrogen-Based Energy Storage, Volume 1: Fundamentals comprehensively describes the synthesis and rich chemistry of the most important group of hydrogen storage materials: metal hydrides. This book is one of a pair of companion volumes, with the other being Metal Hydrides for Hydrogen-Based Energy Storage, Volume 2: Applications.

In Volume 1, an international team of renowned experts explores solid state materials for hydrogen storage with storage capacities reaching 18.5 wt. % H. The content covers fundamentals of metal-hydrogen systems, binary and ternary hydrides, metal deuterides and tritides, complex metal aluminium hydrides, complex metal hydridoborates, structural chemistry of metal hydrides, and computational studies of metal-hydrogen systems as hydrogen storage materials.

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Table of Contents

Section I. Solid-state materials for hydrogen storage
1. Fundamentals of metal-hydrogen systems
2. Binary hydrides
3. Ternary hydrides
4. Metal deuterides and tritides
5. Complex metal aluminium hydrides
6. Complex metal borohydrides
7. Structural chemistry of metallic hydrides
8. Computational studies of metal-hydrogen systems as hydrogen storage materials

Authors

Volodymyr Yartys Professor of Materials Science and Hydrogen Technologies, Norwegian Institute for Energy Technology, Kjeller, Norway and Professor Emeritus, Norwegian University of Science and Technology, Trondheim, Norway. Volodymyr Yartys is a Professor of Materials Science and Hydrogen Technologies at the Norwegian Institute for Energy Technology, Kjeller, Norway, and Professor Emeritus at the Norwegian University of Science and Technology, Trondheim, Norway. He is an expert in hydrogen-based energy storage, and his research focuses on nanomaterials for energy storage, rechargeable batteries, hydrogen as an energy carrier and new materials for hydrogen storage and battery applications.