R&D for Next Generation of LIB in Japan

来源 :CIBF2018国际先进电池前沿技术研讨会 | 被引量 : 0次 | 上传用户:hldxiesj
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
1.Introduction on EV Trend CO2 Emissions by Various Types of the Vehicle News on EV Renault-Nissan-Mitsubishi Alliance:21 new models by 2022.Volkswagen:30 models by 2025.BMW:12 models by 2025.Toyota and Mazda announced a new venture to develop electric vehicle technology.
其他文献
Outline Introduction Development of imide-orthoborate/carbonate based electrolytes Stability of four imide-orthoborate dual-salt mixtures Optimization of LiTFSI-LiBOB composition LiPF6 additive Optimi
会议
本文阐述了用于高容量的硅基负极材料的导电剂的分析和开发,导电添,粘结剂,电解液的设计和配方及和浆工艺对硅碳负极的性能有显著影响。
The global lithium-ion batteries market has been growing over the past three decades and will continue to do so.However,in recent years there has been a shift from IT applications to power application
会议
Cabot has unique technology to control properties of conductive carbon materials,with global supply capabilities to address the demanding needs of battery industry。Cabot LITX offers improved performan
Outline Lab and TFLB introduction Recent advances in TFLB Temperature-dependent entropy change performance Conclusions.Lab introduction Vacuum coating of multi-layer thin films on polymer or metal sub
会议
HERAEUS –A GLOBALLY ACTIVE COMPANY One of the largest family owned companies in Germany 165 years of tradition in innovation More than 100 sites in 40 countries.
会议
Main Contents Background Synthesis of Graphene Materials Discussion of Reaction Mechanism Research on Graphene-based Capacitor Devices Conclusions.
会议
Performance Science to Technology Apply principle-based understanding in performance science to enable technology transfer,implementation & management of charging infrastructure,vehicle platform devel
会议
What is a Fast Charging?Empty to 80 %of max battery capacity within 5 min(more than 10C Rate) EV for All Depend on Fast Charging Capabilities Only option for those who have no parking spot at home 5 m
会议
本文阐述了锂电板块业务及建设模式,提出了EPC建设模式,配料精确,自动化程度高,材料成品质量稳定,关键的耗能设备采用特殊结构,降低能耗,节约成本,系统的多个单元设备可根据生产需要实现集成拆卸、满足新型材料厂家的规模化、定制化生产。