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-  2015 

具有热关断涂层的锂电池隔膜性能表征
Characterization of the Separator with Thermal-Shutdown Layer for Use in Lithium Batteries

DOI: 10.13208/j.electrochem.150746

Keywords: 隔膜,热关断温度,锂离子电池,安全性,
separator
,shutdown temperature,lithium battery,safety

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Abstract:

摘要 介绍了一种具有热关断涂层的锂电池功能隔膜,利用热关断涂层的耐热特点来降低隔膜的热闭孔温度,当电池内部达到一定的温度时,涂层迅速熔化并覆于极片和隔膜之间,形成绝缘层,阻止锂离子的进一步传输,从而提高锂离子电池的安全性. 实验表明,热关断涂层表观均匀,对电池的内阻、倍率性能和循环性能没有不良影响. 电池的安全测试表明,该功能隔膜可表现出优异的安全防护作用.
In this paper, the lithium ion battery coated with the thermal-shutdown functional layer has been introduced. The shutdown temperature of the separator could be decreased by using the melting point of thermal-shutdown functional layer. When the internal battery environment reached a critical temperature, the functional layer melted and coated the anode/separator with a non-conductive barrier, halting Li-ion transport and shutting down the cell permanently. The results showed that the functional layer did not affect the resistance, rate performance and cycle life. It was found the functional layer can significantly improve the safety of the battery when misused

References

[1]  Zhang Z, Fouchard D, Rea JR. Differential scanning calorimetry material studies implications for the safety of lithium-ion cells[J]. Journal of Power Sources, 1998, 70(1): 16-20.
[2]  Moshtev R, Johnson B. State of the art of commercial Li ion batteries[J]. Journal of Power Sources, 2000, 91(2): 86-91.
[3]  Travas-Sejdic J, Steiner R, Desilvestro J, et al. Ion conductivity of novel polyelectrolyte gels for secondary lithium-ion polymer batteries[J]. Electrochimica Acta, 2001, 46(10): 1461-1466.
[4]  Tobishima S I, Takei K, Sakurai Y, et al. Lithium ion cells safety[J]. Journal of Power Sources, 2000, 90(2): 188-195.
[5]  Goodenough J B, Kim Y. Challenges for rechargeable Li batteries[J]. Chemistry of Materials, 2010, 22(3): 587-603.
[6]  Tarascon J M, Armand M. Issues and challenges facing rechargeable lithium batteries[J]. Nature, 2001, 414(6861): 359-367.
[7]  Song J Y, Wang Y Y, Wan C C. Review of gel-type polymer electrolytes for lithium-ion batteries[J]. Journal of Power Sources, 1999, 77(2): 183-197.
[8]  Ohsaki T, Kishi T, Kuboki T, et al. Overcharge reaction of lithium-ion batteries[J]. Journal of Power Sources, 2005, 146(1/2): 97-100.
[9]  Yamaki J I, Baba Y, Katayama N, et al. Thermal stability of electrolytes with LixCoO2 cathode or lithiated carbon anode[J]. Journal of Power Sources, 2003, 119(SI): 789-793.
[10]  Ji W X, Jiang B L, Ai F X, et al. Temperature-responsive microsphere coated separator for thermal shutdown protection of lithium ion batteries[J]. RSC Advances, 2015, 5(1): 172-176.
[11]  Baba Y, Okada S, Yamaki J. Thermal stability of LixCoO2 cathode for lithium ion battery[J]. Solid State Ionics, 2002, 148(3/4): 311-316.

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