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Aqueous processing of lithium-ion battery cathodes using hydrogen peroxide-treated vapor-grown carbon fibers for improvement of electrochemical properties

机译:使用过氧化氢处理的气相生长碳纤维对锂离子电池正极进行水处理,以改善电化学性能

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摘要

The electrochemical behavior of aqueous processing lithium cobalt oxide (LiCoO2) cathodes used hydrogen peroxide (H2O2)-treated vapor-grown carbon fibers (VGCFs) as a conductive agent for lithium-ion batteries has been investigated and improved. The sedimentation experiments show that the dispersibility in water of H2O2-treated VGCFs is better than that of KS-6 (flaky graphite) or as-received VGCFs. This improvement is due to the surface chemistry of H2O2-treated VGCFs has become more hydrophilic that was evidenced by its significant shift of iso-electric point (I.E.P) from pH 6.7 to 5.0. As a result, the H2O2-treated VGCFs can be well-dispersed in the LiCoO2 electrode which was observed by scanning electron microscope. Furthermore, the rate capability results of electrodes show that addition with H2O2-treated VGCFs has better performance than that with KS-6 or as-received VGCFs.
机译:以过氧化氢(H2 O2 )处理的气相生长碳纤维(VGCFs)作为锂离子导电剂的水处理锂钴酸锂(LiCoO2 )阴极的电化学行为电池已经过调查和改进。沉淀实验表明,H2 O2 处理过的VGCFs在水中的分散性优于KS-6(片状石墨)或原样的VGCFs。这种改善是由于H2O2处理过的VGCF的表面化学性质变得更加亲水,这可以通过等电点(I.E.P)从pH 6.7到5.0的明显变化来证明。结果,用扫描电子显微镜观察到,经H 2 O 2处理的VGCF可以很好地分散在LiCoO 2电极中。此外,电极的速率能力结果表明,用H2 O2 处理过的VGCF的添加性能要好于KS-6或原样接收的VGCF。

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  • 来源
    《Journal of Materials Science》 |2007年第24期|10118-10123|共6页
  • 作者单位

    Material and Chemical Research Laboratories Industrial Technology Research Institute Chutung Hsinchu Taiwan ROC;

    Institute of Materials Science and Engineering National Taipei University of Technology Taipei Taiwan ROC;

    Material and Chemical Research Laboratories Industrial Technology Research Institute Chutung Hsinchu Taiwan ROC;

    Material and Chemical Research Laboratories Industrial Technology Research Institute Chutung Hsinchu Taiwan ROC;

    Institute of Materials Science and Engineering National Taipei University of Technology Taipei Taiwan ROC;

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