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锂电宗师:芳尾真幸 2016年新书《Lithium-Ion Batteries:Science and Technologie》已有29人参与
好书分享,2016年日本佐贺大学,锂电宗师级大师Masaki Yoshio新作,系统涵盖了锂电的各个方面。
无论新手老手都应该仔细钻研下大师的作品。
Contributors ................................................................................................... xiii
Introduction .................................................................................................... xvii
1 Synopsis of the Lithium-Ion Battery Markets .................................... 1
Ralph J. Brodd
2 A Review of Positive Electrode Materials for
Lithium-Ion Batteries ............................................................................ 9
Masaki Yoshio and Hideyuki Noguchi
3 Carbon Anode Materials ....................................................................... 49
Zempachi Ogumi and Hongyu Wang
4 Role Assigned Electrolytes: Additives .................................................. 75
Makoto Ue
5 Carbon-Conductive Additives for Lithium-Ion Batteries .................. 117
Michael E. Spahr
6 Applications of PVdF-Related Materials for
Lithium-Ion Batteries ............................................................................ 155
Aisaku Nagai
7 SBR Binder (for Negative Electrode) and ACM Binder
(for Positive Electrode) .......................................................................... 163
Haruhisa Yamamoto and Hidekazu Mori
8 Production Processes for Fabrication of Lithium-Ion Batteries ....... 181
Kazuo Tagawa and Ralph J. Brodd
9 Polyanionic Cathode-Active Materials ................................................ 195
Shigeto Okada and Jun-ichi Yamaki
10 Overcharge Behavior of MetalOxide-
Coated Cathode Materials .................................................................... 207
Jaephil Cho, Byungwoo Park, and Yang-kook Sun
11 Development of Metal Alloy Anodes .................................................... 241
Nikolay Dimov
12 HEV Application .................................................................................... 267
Tatsuo Horiba
13 Flame-Retardant Additives for Lithium-Ion Batteries ...................... 275
Masashi Otsuki and Takao Ogino
14 High-Energy Capacitor Based on Graphite Cathode
and Activated Carbon Anode ................................................................ 291
Masaki Yoshio, Hitoshi Nakamura, and Hongyu Wang
15 Development of LiCoO2 Used for Rechargeable
Lithium-Ion Battery .............................................................................. 299
Hidekazu Awano
16 Cathode Materials: LiNiO2 and Related Compounds........................ 315
Kazuhiko Kikuya, Masami Ueda, and Hiroshi Yamamoto
17 Manganese-Containing Cathode Active Materials for
Lithium-Ion Batteries ............................................................................ 323
Koichi Numata
18 Trends in Carbon Material as an Anode
in Lithium-Ion Battery .......................................................................... 329
Tatsuya Nishida
19 Functional Electrolytes Specially Designed for
Lithium-Ion Batteries ............................................................................ 343
Hideya Yoshitake
20 Lithium-Ion Battery Separators ........................................................... 367
Zhengming (John) Zhang and Premanand Ramadass
21 Polymer Electrolyte and Polymer Battery........................................... 413
Toshiyuki Osawa and Michiyuki Kono
22 A Novel Hard-Carbon Optimized to Large Size
Lithium-Ion Secondary Batteries ......................................................... 427
Aisaku Nagai, Kazuhiko Shimizu, Mariko Maeda, and Kazuma Gotoh
23 LiMn2O4 as a Large Capacity Positive Material
for Lithium-Ion Batteries ...................................................................... 435
Masaki Okada and Masaki Yoshio
Index ................................................................................................................ 445
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