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Energy Storage and Conversion Materials - Properties, Methods, and Applications (Hardcover): Ngoc Thanh Thuy Tran, Jeng-Shiung... Energy Storage and Conversion Materials - Properties, Methods, and Applications (Hardcover)
Ngoc Thanh Thuy Tran, Jeng-Shiung Jan, Wen-Dung Hsu, Ming-Fa Lin, Jow-Lay Huang
R4,140 Discovery Miles 41 400 Ships in 12 - 17 working days

Covers potential energy storage (rechargeable batteries and supercapacitors) and energy conversion (solar cells and fuel cells) materials. Develops theoretical predictions and experimental observations under a unified quasi-particle framework. Illustrate up-to-date calculation results and experimental measurements. Describes successful synthesis, fabrication, and measurements, as well as potential applications and near future challenges.

Lithium-Related Batteries - Advances and Challenges (Hardcover): Ngoc Thanh Thuy Tran, Wen-Dung Hsu, Jow-Lay Huang, Ming-Fa Lin Lithium-Related Batteries - Advances and Challenges (Hardcover)
Ngoc Thanh Thuy Tran, Wen-Dung Hsu, Jow-Lay Huang, Ming-Fa Lin
R4,162 Discovery Miles 41 620 Ships in 12 - 17 working days

Highlights Li-ion batteries and Na-ion batteries, as well as lithium sulfur-, aluminum-, and iron-related batteries Describes advanced battery materials and their fundamental properties Addresses challenges to improving battery performance Develops theoretical predictions and experimental observations under a unified quasi-particle framework Targets core issues like stability and efficiencies

Lithium-Ion Batteries and Solar Cells - Physical, Chemical, and Materials Properties (Hardcover): Ming-Fa Lin, Wen-Dung Hsu,... Lithium-Ion Batteries and Solar Cells - Physical, Chemical, and Materials Properties (Hardcover)
Ming-Fa Lin, Wen-Dung Hsu, Jow-Lay Huang
R4,149 Discovery Miles 41 490 Ships in 12 - 17 working days

Lithium-Ion Batteries and Solar Cells: Physical, Chemical, and Materials Properties presents a thorough investigation of diverse physical, chemical, and materials properties and special functionalities of lithium-ion batteries and solar cells. It covers theoretical simulations and high-resolution experimental measurements that promote a full understanding of the basic science to develop excellent device performance. Employs first-principles and the machine learning method to fully explore the rich and unique phenomena of cathode, anode, and electrolyte (solid and liquid states) in lithium-ion batteries Develops distinct experimental methods and techniques to enhance the performance of lithium-ion batteries and solar cells Reviews syntheses, fabrication, and measurements Discusses open issues, challenges, and potential commercial applications This book is aimed at materials scientists, chemical engineers, and electrical engineers developing enhanced batteries and solar cells for peak performance.

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