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添加剂联用改善4.5V锂离子电池的循环性能

Enhancing cycle performance of 4.5 V Li-ion battery by combination of electrolyte additives

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【作者】 范伟贞左晓希刘建生李钊

【Author】 FAN Wei-zhen;ZUO Xiao-xi;LIU Jian-sheng;LI Zhao;Guangzhou Tinci Materials Technology Co.,Ltd.;School of Chemistry and Environment,South China Normal University;

【机构】 广州天赐高新材料股份有限公司华南师范大学化学与环境学院

【摘要】 将电解液添加剂甲烷二磺酸亚甲酯(MMDS)和三(三甲基硅烷)硼酸酯(TMSB)联用,改善4.5 V石墨/Li Ni1/3Co1/3Mn1/3O2锂离子电池的循环性能。用电化学阻抗谱测试阻抗特性,透射电子显微镜和X射线光电子谱对电极表面进行分析。单独添加1.0%MMDS或1.0%TMSB的电池,以1.00 C在3.0~4.5 V循环200次的容量保持率分别为59.5%和10.9%;0.5%MMDS与0.5%TMSB联用,容量保持率提高至90.6%,原因是电极表面形成了更好的界面膜,抑制阻抗的增加。

【Abstract】 The combination effects of functional electrolyte additives,including methylene methanedisulfonate( MMDS) and tris( trimethylsilyl) borate( TMSB),on the cycle performance of 4. 5 V graphite/LiNi1 /3Co1 /3Mn1 /3O2Li-ion battery was investigated.The impedance behaviors of the battery were measured by electrochemical impedance spectroscopy. The morphology,compositions of the Li Ni1 /3Co1 /3Mn1 /3O2 cathode and graphite anode interface film were measured by transmission electron microscopy and X-ray photoelectron spectroscopy. The combination of 0. 5% MMDS and 0. 5% TMSB in electrolyte additive improved the capacity retention form 59. 5% or 10. 9% to 90. 6% by 200 cycles in 3. 0 ~ 4. 5 V compared to the addition of 1. 0% MMDS or 1. 0% TMSB into the electrolyte. The combination of MMDS and TMSB facilitated the formation of better interface film on both LiNi1 /3Co1 /3Mn1 /3O2 and graphite electrode,suppress impedance growth,thus improving the cycle performance.

【基金】 国家自然科学青年基金(21303062);广州市重点实验室项目(2013-163-7);广州市产学研合作专项项目科技项目(2014Y2-00012)
  • 【分类号】O646;TM912
  • 【被引频次】5
  • 【下载频次】364
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