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Electrolytes for Solid-State Lithium-Ion Batteries

  • 1st Edition - May 1, 2027
  • Latest edition
  • Editors: Rajan Jose, Chun-Chen Yang
  • Language: English

Electrolytes for Solid-State Lithium-Ion Batteries is a comprehensive information resource on popular inorganic electrolytes (oxides, phosphates, sulphides, and zeolites), their… Read more

Description

Electrolytes for Solid-State Lithium-Ion Batteries is a comprehensive information resource on popular inorganic electrolytes (oxides, phosphates, sulphides, and zeolites), their synthesis, properties, and performance in batteries. The book is a source of up-to-date and critical information required for the research community in light of the failure of solid-state batteries using oxide ceramic electrolytes. Each chapter in the book provides in-depth information on the secondary products formed and their growth during cycling. Further, in response to the sustainability aspects, the book provides a detailed life-cycle analysis of each material

Key features

  • Covers the fundamentals of electrolytes and their classification - including their relative merits and drawbacks
  • Includes life-cycle analysis of inorganic electrolytes
  • Battery cycling performance of inorganic electrolytes with stoichiometric variations is discussed in detail
  • Covers the properties of inorganic electrolytes with stoichiometric variations
  • Reviews the properties of inorganic electrolytes with stoichiometric variations

Readership

Electrochemical energy storage researchers

Table of contents

1. Introduction to solid electrolytes (Rajan Jose and Chun-Chen Yang)

2. Advanced Characterization Techniques (Gokulraj et al.)

3. Electrolytes in the Li-La-Zr-O system (Debela Jufar et al)

4. Electrolytes in the Li-La-Ti-O (Jeba Shiny et al) 5. Electrolytes in the Lithium Phosphorus Oxynitride system (Hassan Shabbir et al)

6. Electrolytes in the Li-Al-Ti-PO4 system (Dasalegn et al)

7. Electrolytes in the Li-Ti-PO4 system (Abebe et al)

8. Electrolytes in the perovskite type La-Sr-Ga-Mg-O system (Arjana et al)

9. Electrolytes in the Li-Ta-PO8 System (Habtamu et al)

10. Electrolytes in the Li-La-Ta-O system (Amsalu et al)

11. Electrolytes in the Li-P-S system (Bantie et al)

12. Argyrodite electrolytes (Behrouz et al)

13. Zeolite-based electrolytes (Ghufira et al)

14. An overview of polymer and Solid Electrolytes (J. K. Ling, R. Jose, C.C. Yang)

15. Future of Solid Electrolytes (Ling et al.)

Product details

  • Edition: 1
  • Latest edition
  • Published: May 1, 2027
  • Language: English

About the editors

RJ

Rajan Jose

Rajan Jose is Chair Professor of Energy and Battery Technology at Ming Chi University of Technology, Taiwan, and Senior Professor at Universiti Malaysia Pahang Al-Sultan Abdullah (UMPSA), Malaysia. He serves as Editor-in-Chief of the Springer Nature journal Materials Circular Economy. He previously served as Dean of Research (Technology) at UMPSA and was also a member of the University's Senate and Graduate Council.

He earned his PhD from the Council of Scientific and Industrial Research (CSIR), Trivandrum, India, where his doctoral research focused on nanostructured perovskite ceramics for microwave and superconducting electronics. His research has contributed to the science and engineering of a wide range of materials, including inorganic and organic semiconductors, polymers, metals and alloys, molecular electronic materials, biomaterials, glasses, and glass ceramics.

Prior to joining UMPSA, he held research and scientific positions at the Indira Gandhi Centre for Atomic Research (India), AIST (Japan), Toyota Technological Institute (Japan), and the National University of Singapore (Singapore). His scholarly work spans renewable energy technologies, battery materials, sustainable materials, circular economy, data science, and artificial intelligence. He has authored numerous scientific publications, holds multiple patents, and has supervised researchers at postgraduate and postdoctoral levels. His research contributions have received international recognition within the materials science community.

His current research interests include renewable energy devices, sustainable materials, circular economy, data science, and artificial intelligence.

Affiliations and expertise
Chair Professor, Battery Research Center of Green Energy, Ming Chi University of Technology, New Taipei City, Taiwan

CY

Chun-Chen Yang

Chun-Chen Yang is a Chair Professor of Chemical Engineering and the Director of Battery Research Center of Green Energy (BRCGE), Ming Chi University of Technology, Taiwan. He received his Ph.D. degree in Chemical Engineering from Columbia University, New York City, U.S.A., in 1993. He worked at Motorola in 1994-1995 and then joined Ming Chi University of Technology in 1996. He was promoted to a distinguished professor in 2019 and a chair professor in 2021. He has published over 300 peer-reviewed journal publications and has 60 patents. He is an active researcher in alkaline DMFC, PEMFC, electrospun composite polymer membranes, polymer electrolyte membranes for all-solid-state Li metal batteries, Zn-air battery, Ni-MH battery, and Li-ion batteries, using a range of cathode materials including LiFePO4, LiFeMnPO4, LiFeMnCoPO4, Li3V2(PO4)3, NCM622, NCM811, NCA, and Si/Graphene, Si/graphite, Li4Ti5O12 anodes
Affiliations and expertise
Chair Professor, Ming Chi University of Technology, Taiwan