期刊文献+

锂离子电池基础科学问题(XV)——总结和展望 被引量:40

Fundamental scientific aspects of lithium ion batteries(XV)——Summary and outlook
在线阅读 下载PDF
导出
摘要 自摇椅式可充放锂电池概念由Armand M等人在1972年提出,锂离子电池的基础研究历经43年,在材料体系、电化学反应机理、热力学、动力学、结构演化、表界面反应、安全性、力学行为等方面不断取得更为深入广泛的认识,并最终推动锂离子电池技术发展和成功实现了商业化。锂离子电池面临着电池性能需要全面提升、应用领域需进一步拓宽的强劲需求,因此要求基础研究能够提供创新的、更好的技术解决方案,对锂离子电池材料复杂的构效关系能精确认识,对于电池在制造和服役过程中的失效机制有全面的理解,对各种控制策略的效果能提供可靠的科学依据。同时,锂离子电池的发展也在促进着固态电化学、固态离子学、能源材料、能源物理、纳米科学等交叉基础学科的发展。作为"锂离子电池基础科学问题"讲座的最后一篇文章,本文对锂离子电池基础研究的科学问题,存在的难点、发展趋势进行了总结。 After the suggestion of "rocking chair rechargeable lithium battery" concept by Armand M at 1972, fundamental research on Li-ion batteries has passed 43 years. Deep and comprehensive understandings on materials, electrochemical reaction mechanism, thermodynamics and kinetics of lithium storage, structure evolution, surface and interface reactions, safety and mechanical properties have been achieved continuously, which promote the development of Li-ion batteries and lead to its commercialization. Currently, demandings on improving the performances and extending to broad applications are still very strong. Therefore, it is expected that basic research will be more helpful to provide better solutions, have more precise understandings on the relationship between properties and performances as well as the failure mechanism during fabrication and service, in addition to identify the effects of all creative strategies based on reliable scientific analysis. Moreover, the basic research on Li-ion batteries also enrich the knowledge of solid state electrochemistry, solid state ionics, energy materials, energy physics and nanoscience. As the last paper in this series, scientific problems, new tendency, difficulties, directions and tools for the fundamental research on lithium ion batteries are summarized briefly.
作者 李泓
出处 《储能科学与技术》 CAS 2015年第3期306-318,共13页 Energy Storage Science and Technology
基金 国家自然科学基金杰出青年基金(51325206) 国家重点基础研究发展计划(973)(2012CB932900)项目
关键词 锂离子电池 基础科学问题 lithium-ion batteries fundamental research
作者简介 李泓(1971-),男,研究员,研究方向为固体离子学与锂电池材料,E-mail:hli@iphy.ac.cn。
  • 相关文献

参考文献6

  • 1Armand M,Murphy D,Broadhead J,et al.Materials for Advanced Batteries[M].New York:Plenum Press,1980:145.
  • 2Nishi Y.The development of lithium ion secondary batteries[J].Chemical Record,2001,1(1):406-413.
  • 3Goodenough J,Kim Y.Challenges for rechargeable Li batteries[J]Chem.Mater.,2010,22:587-603.
  • 4Lu Xia,Zhao Liang,He Xiaoqing,Xiao Ruijuan,Gu Lin,Hu Yongsheng,Li Hong,Wang Zhaoxiang,Duan Xiaofeng,Chen Liquan,Maier Joachim,Ikuhara Yuichi.Lithium storage in Li4Ti5O12spinel:The full static picture from electron microscopy[J].Adv.Mater.,2012,24:3233-3238.
  • 5Atsuo Yamada,Masahlro Tanaka.Jahn-Teller structural phase transition around 280K of Li Mn2O4[J].Materia I Research Bulletin,1995,30(6):715-721.
  • 6Zu Chenxi,Li Hong.Thermodynamic analysis on energy densities of batteries[J].Energy Environ.Sci.,2011,4:2614-2624.

同被引文献315

引证文献40

二级引证文献412

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部