首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >A novel all-fiber-based LiFePO4/Li4Ti5O12 battery with self-standing nanofiber membrane electrodes
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A novel all-fiber-based LiFePO4/Li4Ti5O12 battery with self-standing nanofiber membrane electrodes

机译:一种新颖的具有自立式纳米纤维膜电极的全纤维基LiFePO4 / Li4Ti5O12电池

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摘要

Electrodes with high conductivity and flexibility are crucial to the development of flexible lithium-ion batteries. In this study, three-dimensional (3D) LiFePO and Li Ti O fiber membrane materials were prepared through electrospinning and directly used as self-standing electrodes for lithium-ion batteries. The structure and morphology of the fibers, and the electrochemical performance of the electrodes and the full battery were characterized. The results show that the LiFePO and Li Ti O fiber membrane electrodes exhibit good rate and cycle performance. In particular, the all-fiber-based gel-state battery composed of LiFePO and Li Ti O fiber membrane electrodes can be charged/discharged for 800 cycles at 1C with a retention capacity of more than 100 mAh·g and a coulombic efficiency close to 100%. The good electrochemical performance is attributed to the high electronic and ionic conductivity provided by the 3D network structure of the self-standing electrodes. This design and preparation method for all-fiber-based lithium-ion batteries provides a novel strategy for the development of high-performance flexible batteries.
机译:具有高导电性和柔韧性的电极对于柔性锂离子电池的开发至关重要。在这项研究中,通过静电纺丝制备了三维(3D)LiFePO和Li Ti O纤维膜材料,并直接用作锂离子电池的自立电极。表征了纤维的结构和形态,以及电极和整个电池的电化学性能。结果表明,LiFePO和Li Ti O纤维膜电极表现出良好的速率和循环性能。尤其是,由LiFePO和Li Ti O纤维膜电极组成的全纤维型凝胶状电池可在1C下充电/放电800次,保持容量大于100 mAh·g,库仑效率接近100%。良好的电化学性能归因于自立式电极的3D网络结构提供的高电子和离子电导率。这种用于全纤维基锂离子电池的设计和制备方法为开发高性能柔性电池提供了一种新颖的策略。

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