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Advanced battery materials /
~
Sun, Chunwen.
Advanced battery materials /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
621.31/2420284
書名/作者:
Advanced battery materials // edited by Chunwen Sun.
其他作者:
Sun, Chunwen.
出版者:
Hoboken, NJ : : John Wiley & Sons ;, 2019.
面頁冊數:
xvi, 649 p. : : ill. ;; 24 cm.
標題:
Electric batteries - Materials.
ISBN:
9781119407553 (hbk.) :
書目註:
Includes bibliographical references and index.
內容註:
Carbon anode materials for sodium-ion batteries 1 / Hongshuai Hou and Xiaobo Ji -- Lithium titanate based lithium-ion batteries /Jiehua Liu, Xiangfeng Wei and Fancheng Meng -- Rational material design and performance optimization of transition metal oxide-based lithium ion battery anodes / Qingshui Xie and Dong-Liang Peng.
摘要、提要註:
"Electrochemical energy storage has played important roles in energy storage technologies for portable electronics and electric vehicle applications. During the past thirty years, great progress has been made in research and development of various batteries, in term of energy density increase and cost reduction. However, the energy density has to be further increased to achieve long endurance time. In this book, recent research and development in advanced electrode materials for electrochemical energy storage devices are presented, including lithium ion batteries, lithium-sulfur batteries and metal-air batteries, sodium ion batteries and supercapacitors. The materials involve transition metal oxides, sulfides, Si-based material as well as graphene and graphene composites"--
Advanced battery materials /
Advanced battery materials /
edited by Chunwen Sun. - 1st ed. - Hoboken, NJ :John Wiley & Sons ;2019. - xvi, 649 p. :ill. ;24 cm.
Includes bibliographical references and index.
Carbon anode materials for sodium-ion batteries 1 / Hongshuai Hou and Xiaobo Ji -- Lithium titanate based lithium-ion batteries /Jiehua Liu, Xiangfeng Wei and Fancheng Meng -- Rational material design and performance optimization of transition metal oxide-based lithium ion battery anodes / Qingshui Xie and Dong-Liang Peng.
"Electrochemical energy storage has played important roles in energy storage technologies for portable electronics and electric vehicle applications. During the past thirty years, great progress has been made in research and development of various batteries, in term of energy density increase and cost reduction. However, the energy density has to be further increased to achieve long endurance time. In this book, recent research and development in advanced electrode materials for electrochemical energy storage devices are presented, including lithium ion batteries, lithium-sulfur batteries and metal-air batteries, sodium ion batteries and supercapacitors. The materials involve transition metal oxides, sulfides, Si-based material as well as graphene and graphene composites"--
ISBN: 9781119407553 (hbk.) :NTD 7,095
LCCN: 2019008187Subjects--Topical Terms:
488107
Electric batteries
--Materials.
LC Class. No.: TK2910 / .A38 2019
Dewey Class. No.: 621.31/2420284
Advanced battery materials /
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Carbon anode materials for sodium-ion batteries 1 / Hongshuai Hou and Xiaobo Ji -- Lithium titanate based lithium-ion batteries /Jiehua Liu, Xiangfeng Wei and Fancheng Meng -- Rational material design and performance optimization of transition metal oxide-based lithium ion battery anodes / Qingshui Xie and Dong-Liang Peng.
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"Electrochemical energy storage has played important roles in energy storage technologies for portable electronics and electric vehicle applications. During the past thirty years, great progress has been made in research and development of various batteries, in term of energy density increase and cost reduction. However, the energy density has to be further increased to achieve long endurance time. In this book, recent research and development in advanced electrode materials for electrochemical energy storage devices are presented, including lithium ion batteries, lithium-sulfur batteries and metal-air batteries, sodium ion batteries and supercapacitors. The materials involve transition metal oxides, sulfides, Si-based material as well as graphene and graphene composites"--
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