𝔖 Scriptorium
✦   LIBER   ✦

πŸ“

Electrolytes for Lithium and Lithium-Ion Batteries

✍ Scribed by T. Richard Jow, Kang Xu, Oleg Borodin, Makoto Ue (eds.)


Publisher
Springer-Verlag New York
Year
2014
Tongue
English
Leaves
488
Series
Modern Aspects of Electrochemistry 58
Edition
1
Category
Library

⬇  Acquire This Volume

No coin nor oath required. For personal study only.

✦ Synopsis


Electrolytes for Lithium and Lithium-ion Batteries provides a comprehensive overview of the scientific understanding and technological development of electrolyte materials in the last several years. This book covers key electrolytes such as LiPF6 salt in mixed-carbonate solvents with additives for the state-of-the-art Li-ion batteries as well as new electrolyte materials developed recently that lay the foundation for future advances. This book also reviews the characterization of electrolyte materials for their transport properties, structures, phase relationships, stabilities, and impurities. The book discusses in-depth the electrode-electrolyte interactions and interphasial chemistries that are key for the successful use of the electrolyte in practical devices. The Quantum Mechanical and Molecular Dynamical calculations that has proved to be so powerful in understanding and predicating behavior and properties of materials is also reviewed in this book. Electrolytes for Lithium and Lithium-ion Batteries is ideal for electrochemists, engineers, researchers interested in energy science and technology, material scientists, and physicists working on energy.

✦ Table of Contents


Front Matter....Pages i-xviii
Nonaqueous Electrolytes: Advances in Lithium Salts....Pages 1-92
Nonaqueous Electrolytes with Advances in Solvents....Pages 93-165
Nonaqueous Electrolytes and Advances in Additives....Pages 167-207
Recent Advances in Ionic Liquids for Lithium Secondary Batteries....Pages 209-225
Interphases Between Electrolytes and Anodes in Li-Ion Battery....Pages 227-282
On the Surface Chemistry of Cathode Materials in Li-Ion Batteries....Pages 283-321
Tools and Methodologies for the Characterization of Electrode–Electrolyte Interfaces....Pages 323-369
Molecular Modeling of Electrolytes....Pages 371-401
Prediction of Electrolyte and Additive Electrochemical Stabilities....Pages 403-443
Aprotic Electrolytes in Li–Air Batteries....Pages 445-466
Back Matter....Pages 467-476

✦ Subjects


Energy Storage; Electrochemistry; Industrial Chemistry/Chemical Engineering; Surfaces and Interfaces, Thin Films; Energy Technology


πŸ“œ SIMILAR VOLUMES


Electrolytes for Lithium and Lithium-Ion
✍ T. Richard Jow, Kang Xu, Oleg Borodin, Makoto Ue πŸ“‚ Library πŸ“… 2014 πŸ› Springer 🌐 English

Electrolytes for Lithium and Lithium-ion Batteries provides a comprehensive overview of the scientific understanding and technological development of electrolyte materials in the lastΒ several years. This book covers key electrolytes such as LiPF<sub>6</sub> salt in mixed-carbonate solvents with addi

Designing Electrolytes for Lithium-Ion a
✍ Wladyslaw Wieczorek (editor), Janusz Plocharski (editor) πŸ“‚ Library πŸ“… 2021 πŸ› Pan Sanford 🌐 English

Every electrochemical source of electric current is composed of two electrodes with an electrolyte in between. Since storage capacity depends predominantly on the composition and design of the electrodes, most research and development efforts have been focused on them. Considerably less attention ha

Lithium-Ion Batteries: Solid-Electrolyte
✍ Perla B. Balbuena, Yixuan Wang πŸ“‚ Library πŸ“… 2004 πŸ› World Scientific Publishing Company 🌐 English

This book focuses on the mechanisms of formation of a solid-electrolyte interphase (SEI) on the electrode surfaces of lithium-ion batteries. The SEI film is due to electrochemical reduction of species present in the electrolyte. It is widely recognized that the presence of the film plays an essentia

Materials for Lithium-Ion Batteries
✍ C. Julien (auth.), C. Julien, Z. Stoynov (eds.) πŸ“‚ Library πŸ“… 2000 πŸ› Springer Netherlands 🌐 English

<p>A lithium-ion battery comprises essentially three components: two intercalation compounds as positive and negative electrodes, separated by an ionic-electronic electrolyte. Each component is discussed in sufficient detail to give the practising engineer an understanding of the subject, providing

Nanotechnology for Lithium-Ion Batteries
✍ Yaser Abu-Lebdeh (auth.), Yaser Abu-Lebdeh, Isobel Davidson (eds.) πŸ“‚ Library πŸ“… 2013 πŸ› Springer US 🌐 English

<p>This book combines two areas of intense interest: nanotechnology, and energy conversion and storage devices. In particular, Li-ion batteries have enjoyed conspicuous success in many consumer electronic devices and their projected use in vehicles that will revolutionize the way we travel in the ne

Microscopy and Microanalysis for Lithium
✍ Cai Shen πŸ“‚ Library πŸ“… 2023 πŸ› CRC Press 🌐 English

The past three decades have witnessed the great success of lithium-ion batteries, especially in the areas of 3C products, electrical vehicles, and smart grid applications. However, further optimization of the energy/power density, coulombic efficiency, cycle life, charge speed, and environmental ada