首页> 外文期刊>Journal of power sources >Development of carbon conductive additives for advanced lithium ion batteries
【24h】

Development of carbon conductive additives for advanced lithium ion batteries

机译:开发用于高级锂离子电池的碳导电添加剂

获取原文
获取原文并翻译 | 示例
       

摘要

The newly developed conductive carbon blacks C-NERGY~ ™ Super C65 and C-NERGY~™ Super C45 were studied with regard to their performance as conductive additives in positive lithium ion battery electrodes and compared to other reference conductive carbon blacks. The lowest electrical volume resistivity and highest compressibility were found for C-NERGY~™ Super C45 dry-mixed with LiCoO_2 powder. Mixing by high shear forces in acetone dispersion improved the electrical resistivity and compressibility of the C-NERGY~™ Super C65 containing LiCoO_2 mixture to the same level obtained for the C-NERGY~™ Super C45 mixture in the same process. Acetone dispersions of C-NERGY~™ Super C45 and UCoO_2 showed the lowest viscosities attributed to the carbon black's specific BET surface area of 45 m~2 g_(-1) being the lowest of all carbon blacks studied. The easy dispersibility of C-NERGY~™ Super C45 in LiCoO_2 could be explained by its particular surface group chemistry characterized by time-of-flight secondary ion mass spectrometry. The electrical volume resistivity of the LiCoO-2/carbon black mixtures was in line with the high current rate performance of half-cells with related LiCoO_2 electrodes. Compared to the investigated carbon blacks, the electrical volume resistivity of the graphite conductive additives C-NERGY~™ KS6L and C-NERGY~™ SFG6L at different concentrations in UCoO_2 powders showed higher critical volume fractions but lower ultimate resistivity levels. Adding one of these graphites to the carbon black conductive mass improved the electrode density and, at concentrations above the critical volume fraction of the graphite component, significantly decreased the ultimate resistivity level of the LiCoO_2 electrode mass.
机译:研究了新开发的导电炭黑C-NERGY〜™Super C65和C-NERGY〜™Super C45在正极锂离子电池电极中作为导电添加剂的性能,并与其他参考导电炭黑进行了比较。与LiCoO_2粉末干混的C-NERGY〜™Super C45的最低体积电阻率和最高压缩率。通过高剪切力在丙酮分散液中进行混合,可将含有LiCoO_2混合物的C-NERGY〜™Super C65混合物的电阻率和可压缩性提高到与C-NERGY〜™Super C45混合物相同的水平。 C-NERGY〜™Super C45和UCoO_2的丙酮分散体显示出最低的粘度,这归因于炭黑的BET比表面积为45 m〜2 g _(-1),是所有研究的炭黑中最低的。 C-NERGY〜™Super C45在LiCoO_2中的易分散性可以通过飞行时间二次离子质谱法表征的特定表面基团化学来解释。 LiCoO-2 /炭黑混合物的体积电阻率与具有相关LiCoO_2电极的半电池的高电流速率性能一致。与研究的炭黑相比,在UCoO_2粉末中不同浓度的石墨导电添加剂C-NERGY〜™KS6L和C-NERGY〜™SFG6L的体积电阻率显示出较高的临界体积分数,但具有较低的极限电阻率水平。将这些石墨之一添加到炭黑导电物料中可改善电极密度,并且在高于石墨组分临界体积分数的浓度下,会显着降低LiCoO_2电极物料的极限电阻率水平。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号