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Functional materials for next-generation rechargeable batteries
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Functional materials for next-generation rechargeable batteries/ editors, Jiangfeng Ni, Li Lu.
other author:
Ni, Jiangfeng.
Published:
Singapore :World Scientific, : c2021.,
Description:
1 online resource (xi, 216 p.) :ill. :
Subject:
Storage batteries - Materials. -
Online resource:
https://www.worldscientific.com/worldscibooks/10.1142/12110#t=toc
ISBN:
9789811230677
Functional materials for next-generation rechargeable batteries
Functional materials for next-generation rechargeable batteries
[electronic resource] /editors, Jiangfeng Ni, Li Lu. - 1st ed. - Singapore :World Scientific,c2021. - 1 online resource (xi, 216 p.) :ill.
"Over-consumption of fossil fuels has caused deficiency of limited resources and environmental pollution. Hence, deployment and utilization of renewable energy become an urgent need. The development of next-generation rechargeable batteries that store more energy and last longer has been significantly driven by the utilization of renewable energy. This book starts with principles and fundamentals of lithium rechargeable batteries, followed by their designs and assembly. The book then focuses on the recent progress in the development of advanced functional materials, as both cathode and anode, for next-generation rechargeable batteries such as lithium-sulfur, sodium-ion, and zinc-ion batteries. One of the special features of this book is that both inorganic electrode materials and organic materials are included to meet the requirement of high energy density and high safety of future rechargeable batteries. In addition to traditional non-aqueous rechargeable batteries, detailed information and discussion on aqueous batteries and solid-state batteries are also provided"--Publisher's website.
ISBN: 9789811230677Subjects--Topical Terms:
1091128
Storage batteries
--Materials.
LC Class. No.: TK2941 / .F86 2021
Dewey Class. No.: 621.3124 / F962
Functional materials for next-generation rechargeable batteries
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"Over-consumption of fossil fuels has caused deficiency of limited resources and environmental pollution. Hence, deployment and utilization of renewable energy become an urgent need. The development of next-generation rechargeable batteries that store more energy and last longer has been significantly driven by the utilization of renewable energy. This book starts with principles and fundamentals of lithium rechargeable batteries, followed by their designs and assembly. The book then focuses on the recent progress in the development of advanced functional materials, as both cathode and anode, for next-generation rechargeable batteries such as lithium-sulfur, sodium-ion, and zinc-ion batteries. One of the special features of this book is that both inorganic electrode materials and organic materials are included to meet the requirement of high energy density and high safety of future rechargeable batteries. In addition to traditional non-aqueous rechargeable batteries, detailed information and discussion on aqueous batteries and solid-state batteries are also provided"--Publisher's website.
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https://www.worldscientific.com/worldscibooks/10.1142/12110#t=toc
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