Principles and Applications of Lithium Secondary Batteries: PARK:LI BATTERIES O-BK
معرفی کتاب «Principles and Applications of Lithium Secondary Batteries: PARK:LI BATTERIES O-BK» نوشتهٔ Park, Jung-Ki (editor)، منتشرشده توسط نشر Wiley-VCH Verlag GmbH & Co. KGaA در سال 2012. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.
Lithium secondary batteries have been key to mobile electronics since 1990. Large-format batteries typically for electric vehicles and energy storage systems are attracting much attention due to current energy and environmental issues. Lithium batteries are expected to play a central role in boosting green technologies. Therefore, a large number of scientists and engineers are carrying out research and development on lithium secondary batteries. The book is written in a straightforward fashion suitable for undergraduate and graduate students, as well as scientists, and engineers starting out in the field. The chapters in this book have been thoroughly edited by a collective of experts to achieve a cohesive book with a consistent style, level, and philosophy. They cover a wide range of topics, including principles and technologies of key materials such as the cathode, anode, electrolyte, and separator. Battery technologies such as design, manufacturing processes, and evaluation methods as well as applications are addressed. In addition, analytical methods for determining electrochemical and other properties of batteries are also included. Hence, this book is a must-have for everyone interested in obtaining all the basic information on lithium secondary batteries. "Lithium secondary batteries have been key to mobile electronics since 1990. Large-format batteries typically for electric vehicles and energy storage systems are attracting much attention due to current energy and environmental issues. Lithium batteries are expected to play a central role in boosting green technologies. Therefore, a large number of scientists and engineers are carrying out research and development on lithium secondary batteries. The book is written in a straightforward fashion suitable for undergraduate and graduate students, as well as scientists, and engineers starting out in the field. The chapters in this book have been thoroughly edited by a collective of experts to achieve a cohesive book with a consistent style, level, and philosophy. They cover a wide range of topics, including principles and technologies of key materials such as the cathode, anode, electrolyte, and separator. Battery technologies such as design, manufacturing processes, and evaluation methods as well as applications are addressed. In addition, analytical methods for determining electrochemical and other properties of batteries are also included."-- Provided by publisher "Lithium secondary batteries have been key to mobile electronics since 1990. Large-format batteries typically for electric vehicles and energy storage systems are attracting much attention due to current energy and environmental issues. Lithium batteries are expected to play a central role in boosting green technologies. Therefore, a large number of scientists and engineers are carrying out research and development on lithium secondary batteries. The book is written in a straightforward fashion suitable for undergraduate and graduate students, as well as scientists, and engineers starting out in the field. The chapters in this book have been thoroughly edited by a collective of experts to achieve a cohesive book with a consistent style, level, and philosophy. They cover a wide range of topics, including principles and technologies of key materials such as the cathode, anode, electrolyte, and separator. Battery technologies such as design, manufacturing processes, and evaluation methods as well as applications are addressed. In addition, analytical methods for determining electrochemical and other properties of batteries are also included"--Page 4 of cover Content: Chapter 1 Introduction (pages 1–7): Chapter 2 The Basic of Battery Chemistry (pages 9–19): Chapter 3 Cathode Materials (pages 21–87): Chapter 4 Anode Materials (pages 89–139): Chapter 5 Electrolytes (pages 141–194): Chapter 6 Interfacial Reactions and Characteristics (pages 195–230): Chapter 7 Electrochemical Analysis (pages 231–261): Chapter 8 Material Property Analysis (pages 263–317): Chapter 9 Battery Design and Manufacturing (pages 319–335): Chapter 10 Battery Performance Evaluation (pages 337–353):
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