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Electrochemical fabrication and evaluation of a self-standing carbon nanotube/carbon fiber composite electrode for lithium-ion batteries

机译:锂离子电池自立式碳纳米管/碳纤维复合电极的电化学制备与评价

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摘要

A binder-free self-standing carbon nanotube (CNT)/carbon fiber (CF) composite electrode, which has been developed using an electrophoretic deposition approach, was utilized as a lithium-ion battery anode. The morphology of the CNT/CF composite has been examined using scanning electron microscopy, and the results indicated that a CNT layer uniformly deposited on the CFs. The thickness and density of the CNT layer increased as the electrodeposition time increased, while overdeposition caused the CNT layer to exfoliate. Electrochemical evaluation revealed that the specific capacity, cycling stability, and rate capability of the CNT/CF anode were superior to those of the CF anode. The electrochemical impedance analysis results further revealed that the solid/electrolyte interface resistance and interface resistance induced by the oxygen-containing surface functional groups of CFs dominated the impedance of the anode. However, these resistance values could be potentially reduced via CNT surface modification, which could lead to the enhanced electrochemical performance of the CNT/CF anode. Our findings should open new avenues for the potential use of the CNT/CF composite as a self-standing anode for lithium-ion battery applications.
机译:使用电泳沉积方法开发的无粘合剂自立式碳纳米管(CNT)/碳纤维(CF)复合电极被用作锂离子电池负极。使用扫描电子显微镜检查了CNT / CF复合材料的形态,结果表明CNT层均匀地沉积在CF上。 CNT层的厚度和密度随着电沉积时间的增加而增加,而过度沉积导致CNT层剥落。电化学评估表明,CNT / CF阳极的比容量,循环稳定性和倍率性能优于CF阳极。电化学阻抗分析结果进一步表明,CFs的含氧表面官能团引起的固体/电解质界面电阻和界面电阻主导着阳极的阻抗。但是,这些电阻值可能会通过CNT表面改性而降低,这可能导致CNT / CF阳极的电化学性能增强。我们的发现应为碳纳米管/碳纤维复合材料作为锂离子电池应用的自立阳极潜在用途开辟新途径。

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