Lithium-Ion Batteries

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advanced energy storage systems
battery manufacturing technology
capacity
Carbon Negative Electrode
Carbon Negative Electrode Materials
Category=PHDY
Conductive Agent
Coulombic Efficiency
Cycling Performance
dimethyl
electrochemical
electrochemical cell design
Electrochemical Performance
Electrochemistry
electrode
electrode material synthesis
Energy Density
Energy Storage
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Gel Polymer Electrolyte
Gelled Polymer Electrolytes
High Ionic Conductivity
Initial Coulombic Efficiency
Ionic Conductivity
Irreversible Capacity
Li-Ion Batteries
Li-Ion Battery Applications
Li-Ion Battery Assembly Processes
Li-Ion Battery Electrochemical Performance
Li-Ion Battery Fundamentals
Li-Ion Battery Materials
LIB
LiCoO2-Based Positive Electrode Materials
LiFePO4-Based Positive Electrode Materials
LiMn2O4-Based Positive Electrode Materials
LiNiO2-Based Positive Electrode Materials
Liquid Electrolytes
Lithium Insertion
Lithium Intercalation
Lithium Salt
Lithium-Ion Batteries
Lithium-Ion Battery Applications
Lithium-Ion Battery Assembly Processes
Lithium-Ion Battery Electrochemical Performance
Lithium-Ion Battery Fundamentals
Lithium-Ion Battery Materials
lithium-ion battery research applications
material
material characterization methods
materials
negative
Negative Electrode
Negative Electrode Materials
Noncarbon Negative Electrode Materials
Organic Electrolyte
performance
Polymer Electrolyte
Polymer Lithium Ion Batteries
positive
Positive Electrode Materials
Power Sources
reversible
Reversible Capacity
Sei Film
Separators
Sol Gel Methods
Solid Electrolytes
Solid Polymer Electrolytes
Spinel LiMn2O4-Based Positive Electrode Materials
thermal management in batteries

Product details

  • ISBN 9781466557338
  • Weight: 1280g
  • Dimensions: 152 x 229mm
  • Publication Date: 24 Apr 2015
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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Lithium-Ion Batteries: Fundamentals and Applications offers a comprehensive treatment of the principles, background, design, production, and use of lithium-ion batteries. Based on a solid foundation of long-term research work, this authoritative monograph:

  • Introduces the underlying theory and history of lithium-ion batteries
  • Describes the key components of lithium-ion batteries, including negative and positive electrode materials, electrolytes, and separators
  • Discusses electronic conductive agents, binders, solvents for slurry preparation, positive thermal coefficient (PTC) materials, current collectors, and cases
  • Examines the assembly processes and electrochemical performance of lithium-ion batteries
  • Explores applications in power tools, electric vehicles, aerospace, and more

Lithium-Ion Batteries: Fundamentals and Applications delivers a systematic overview of lithium-ion batteries, from physical properties to manufacturing technologies. The book also supplies valuable insight into potential growth opportunities in this exciting market.

Yuping Wu received his Ph.D from the Institute of Chemistry, Chinese Academy of Science, Beijing, and conducted his postdoctoral research at Tsinghua University, Beijing, China. He has been a visiting researcher at Waseda University, Tokyo, Japan; a Humboldt fellow at Technische Universität Chemnitz, Germany; and a full professor in the Department of Chemistry, Fudan University, Shanghai, China. Widely published and highly decorated, Dr. Wu is currently affiliated with the College of Energy, Nanjing Tech University, China. A popular speaker, he has served as co-chair of the International Union of Pure and Applied Chemistry International Conference on Novel Materials and their Synthesis, as well as an advisory board member for several journals.