首页> 外文期刊>The journal of physics and chemistry of solids >Centrifugally spun TiO2/C composite fibers prepared from TiS2/PAN precursor fibers as binder-free anodes for LIBS
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Centrifugally spun TiO2/C composite fibers prepared from TiS2/PAN precursor fibers as binder-free anodes for LIBS

机译:离心纺丝TiO2 / C复合纤维由TIS2 / PAN前体纤维制备为LIBS的无粘合剂阳极

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摘要

TiO2/carbon composite-fiber anodes for lithium ion batteries were prepared through the centrifugal spinning of TiS2/polyacrylonitrile (PAN) precursor fibers and subsequent thermal treatment. The TiS2/PAN precursor solutions were prepared by mixing TiS2 nanoparticles (a 2-D layered structure) with PAN in N, N-dimethylformamide (DMF). The thermal treatment of the TiS2 in the centrifugally spun PAN fibers resulted in TiO2/carbon composite fibers. The structure of TiO2 nanoparticles embedded in the carbon-fiber matrix synthesized from the TiS2 starting material may accommodate high amounts of Li ions. The TiO2/C structure may lead to increased specific capacity, improved stability, and enhanced electrochemical performance of the TiO2/C composite electrode after prolonged charge/discharge cycles. The TiO2/C composite-fiber anode delivered discharge and charge capacities at the first cycle of 683 mAbg(-1) and 356 mAhg(-1), respectively, with a reversible charge capacity of 290 mAhg(-1) after 100 cycles at a current density of 100 mAg(-1). The TiO2/C composite fibers showed an improvement in the rate performance at higher current densities compared to the graphite anode alone.
机译:通过TiS2/聚丙烯腈(PAN)原丝的离心纺丝和随后的热处理,制备了用于锂离子电池的TiO2/碳复合纤维阳极。通过将TiS2纳米颗粒(二维层状结构)与PAN在N,N-二甲基甲酰胺(DMF)中混合,制备TiS2/PAN前体溶液。对离心纺PAN纤维中的TiS2进行热处理,得到TiO2/碳复合纤维。嵌入由TiS2起始材料合成的碳纤维基体中的TiO2纳米颗粒的结构可容纳大量锂离子。TiO2/C结构可导致TiO2/C复合电极在长时间充电/放电循环后的比容量增加、稳定性提高和电化学性能增强。TiO2/C复合纤维阳极在第一个循环中的放电和充电容量分别为683 mAhg(-1)和356 mAhg(-1),在100个循环后,在100 mAh(-1)的电流密度下,可逆充电容量为290 mAhg(-1)。与石墨阳极相比,TiO2/C复合纤维在更高电流密度下的速率性能有所改善。

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