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Solid State Batteries: Materials Design and Optimization (Hardcover, 1994 ed.): Christian Julien, Gholam-Abbas Nazri Solid State Batteries: Materials Design and Optimization (Hardcover, 1994 ed.)
Christian Julien, Gholam-Abbas Nazri
R8,316 Discovery Miles 83 160 Ships in 10 - 15 working days

The field of solid state ionics is multidisciplinary in nature. Chemists, physicists, electrochimists, and engineers all are involved in the research and development of materials, techniques, and theoretical approaches. This science is one of the great triumphs of the second part of the 20th century. For nearly a century, development of materials for solid-state ionic technology has been restricted. During the last two decades there have been remarkable advances: more materials were discovered, modem technologies were used for characterization and optimization of ionic conduction in solids, trial and error approaches were deserted for defined predictions. During the same period fundamental theories for ion conduction in solids appeared. The large explosion of solid-state ionic material science may be considered to be due to two other influences. The first aspect is related to economy and connected with energy production, storage, and utilization. There are basic problems in industrialized countries from the economical, environmental, political, and technological points of view. The possibility of storing a large amount of utilizable energy in a comparatively small volume would make a number of non-conventional intermittent energy sources of practical convenience and cost. The second aspect is related to huge increase in international relationships between researchers and exchanges of results make considerable progress between scientists; one find many institutes joined in common search programs such as the material science networks organized by EEC in the European countries.

Lithium Batteries - Science and Technology (Hardcover, 2003 ed.): Gholam-Abbas Nazri, Gianfranco Pistoia Lithium Batteries - Science and Technology (Hardcover, 2003 ed.)
Gholam-Abbas Nazri, Gianfranco Pistoia
R8,028 Discovery Miles 80 280 Ships in 18 - 22 working days

Lithium Batteries: Science and Technology is a comprehensive compendium on advanced power sources and energy related topics. Each chapter is a detailed and thorough treatment of its subject. This volume includes several tutorials and contributes to an understanding of the many fields that impact the development of lithium batteries. Recent advances on various components are included and numerous examples of innovation are presented. Extensive references are given at the end of each chapter. All contributors are internationally recognized experts in their respective specialty. The fundamental knowledge necessary for designing new battery materials with desired physical and chemical properties including structural, electronic and reactivity are discussed. The molecular engineering of battery materials is treated by the most advanced theoretical and experimental methods. Readers can find a wealth of energy related topics, such as energy storage, use of hybrid systems and battery-based transportation. This book is designed primarily as a reference book covering all aspects of physics, chemistry and the materials science of Li batteries. book for advanced level courses. Lithium Batteries: Science & Technology should be a valuable reference book for researchers, battery developers and manufacturers, and industrial managers working in the field of Li batteries.

Solid State Batteries: Materials Design and Optimization (Paperback, Softcover reprint of the original 1st ed. 1994): Christian... Solid State Batteries: Materials Design and Optimization (Paperback, Softcover reprint of the original 1st ed. 1994)
Christian Julien, Gholam-Abbas Nazri
R8,385 Discovery Miles 83 850 Ships in 18 - 22 working days

The field of solid state ionics is multidisciplinary in nature. Chemists, physicists, electrochimists, and engineers all are involved in the research and development of materials, techniques, and theoretical approaches. This science is one of the great triumphs of the second part of the 20th century. For nearly a century, development of materials for solid-state ionic technology has been restricted. During the last two decades there have been remarkable advances: more materials were discovered, modem technologies were used for characterization and optimization of ionic conduction in solids, trial and error approaches were deserted for defined predictions. During the same period fundamental theories for ion conduction in solids appeared. The large explosion of solid-state ionic material science may be considered to be due to two other influences. The first aspect is related to economy and connected with energy production, storage, and utilization. There are basic problems in industrialized countries from the economical, environmental, political, and technological points of view. The possibility of storing a large amount of utilizable energy in a comparatively small volume would make a number of non-conventional intermittent energy sources of practical convenience and cost. The second aspect is related to huge increase in international relationships between researchers and exchanges of results make considerable progress between scientists; one find many institutes joined in common search programs such as the material science networks organized by EEC in the European countries.

Lithium Batteries - Science and Technology (Paperback, 2003 ed.): Gholam-Abbas Nazri, Gianfranco Pistoia Lithium Batteries - Science and Technology (Paperback, 2003 ed.)
Gholam-Abbas Nazri, Gianfranco Pistoia
R9,088 Discovery Miles 90 880 Ships in 18 - 22 working days

Lithium Batteries: Science and Technology is an up-to-date and comprehensive compendium on advanced power sources and energy related topics. Each chapter is a detailed and thorough treatment of its subject. The volume includes several tutorials and contributes to an understanding of the many fields that impact the development of lithium batteries. Recent advances on various components are included and numerous examples of innovation are presented. Extensive references are given at the end of each chapter. All contributors are internationally recognized experts in their respective specialty. The fundamental knowledge necessary for designing new battery materials with desired physical and chemical properties including structural, electronic and reactivity are discussed. The molecular engineering of battery materials is treated by the most advanced theoretical and experimental methods.

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