Lithium-Ion Battery Chemistries: A Primer
Lithium-Ion Battery Chemistries: A Primer offers a simple description on how different lithium-ion battery chemistries work, along with their differences. It includes a refresher on the basics of electrochemistry and thermodynamics, and an understanding of the fundamental processes that occur in the lithium-ion battery. Furthermore, it reviews each of the major chemistries that are in use today, including Lithium-Iron Phosphate (LFP), Lithium-Cobalt Oxide (LCO), Lithium Manganese Oxide (LMO), Lithium-Nickel Manganese Cobalt (NMC), Lithium-Nickel Cobalt Aluminium (NCA), and Lithium-Titanate Oxide (LTO) and outlines the different types of anodes, including carbon (graphite, hard carbon, soft carbon, graphene), silicon, and tin.

In addition, the book offers performance comparisons of different chemistries to help users select the right battery for the right application and provides explanations on why different chemistries have different performances and capabilities. Finally, it offers a brief look at emerging and beyond-lithium chemistries, including lithium-air, zinc-air, aluminum air, solid-state, lithium-sulfur, lithium-glass, and lithium-metal.

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Lithium-Ion Battery Chemistries: A Primer
Lithium-Ion Battery Chemistries: A Primer offers a simple description on how different lithium-ion battery chemistries work, along with their differences. It includes a refresher on the basics of electrochemistry and thermodynamics, and an understanding of the fundamental processes that occur in the lithium-ion battery. Furthermore, it reviews each of the major chemistries that are in use today, including Lithium-Iron Phosphate (LFP), Lithium-Cobalt Oxide (LCO), Lithium Manganese Oxide (LMO), Lithium-Nickel Manganese Cobalt (NMC), Lithium-Nickel Cobalt Aluminium (NCA), and Lithium-Titanate Oxide (LTO) and outlines the different types of anodes, including carbon (graphite, hard carbon, soft carbon, graphene), silicon, and tin.

In addition, the book offers performance comparisons of different chemistries to help users select the right battery for the right application and provides explanations on why different chemistries have different performances and capabilities. Finally, it offers a brief look at emerging and beyond-lithium chemistries, including lithium-air, zinc-air, aluminum air, solid-state, lithium-sulfur, lithium-glass, and lithium-metal.

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Lithium-Ion Battery Chemistries: A Primer

Lithium-Ion Battery Chemistries: A Primer

by John T. Warner
Lithium-Ion Battery Chemistries: A Primer

Lithium-Ion Battery Chemistries: A Primer

by John T. Warner

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Overview

Lithium-Ion Battery Chemistries: A Primer offers a simple description on how different lithium-ion battery chemistries work, along with their differences. It includes a refresher on the basics of electrochemistry and thermodynamics, and an understanding of the fundamental processes that occur in the lithium-ion battery. Furthermore, it reviews each of the major chemistries that are in use today, including Lithium-Iron Phosphate (LFP), Lithium-Cobalt Oxide (LCO), Lithium Manganese Oxide (LMO), Lithium-Nickel Manganese Cobalt (NMC), Lithium-Nickel Cobalt Aluminium (NCA), and Lithium-Titanate Oxide (LTO) and outlines the different types of anodes, including carbon (graphite, hard carbon, soft carbon, graphene), silicon, and tin.

In addition, the book offers performance comparisons of different chemistries to help users select the right battery for the right application and provides explanations on why different chemistries have different performances and capabilities. Finally, it offers a brief look at emerging and beyond-lithium chemistries, including lithium-air, zinc-air, aluminum air, solid-state, lithium-sulfur, lithium-glass, and lithium-metal.


Product Details

ISBN-13: 9780128147788
Publisher: Elsevier Science
Publication date: 05/11/2019
Pages: 353
Product dimensions: 7.50(w) x 9.25(h) x (d)

About the Author

John T. Warner is a recognized battery industry expert and experienced business, sales, marketing, and product management executive with more than 35 years of experience in the automotive and battery industries. Currently, Dr. Warner serves as the Chief Customer Officer at American Battery Solutions, an EV battery pack engineering and manufacturing company. He is the Founder of Warner Energy Consulting LLC and has led the sales and marketing functions for several major battery manufacturers and start-ups. Dr. Warner also serves as an advisory and an independent board member for several advanced technology start-up companies in the battery space.

Table of Contents

1. Introduction2. Eletrochemistry Basics3. Lithium-ion Battery Operation4. Overview and Comparison of Different Lithium-Ion Chemistries5. The Cathodes6. The Anodes7. The Inactive Materials8. The Materials9. Lithium-ion Cell Manufacturing10. Next Generation and Beyond Lithium Chemistries11. The Future and Energy Storage

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From the Publisher

Provides an explanation of the major lithium-ion chemistries in use today and a glimpse into the future beyond lithium chemistries

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