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Data on effect of electrospinning conditions on morphology and effect of heat-treatment temperature on the cycle and rate properties of core-shell LiFePO4/FeS/C composite fibers for use as cathodes in Li-ion batteries

机译:静电纺丝条件对形貌的影响以及热处理温度对用作锂离子电池正极的核壳型LiFePO4 / FeS / C复合纤维的循环和速率特性的影响的数据

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摘要

The data in this study are related to the research article “Core-shell electrospun and doped LiFePO4/FeS/C composite fibers for Li-ion batteries” [1]. Core-shell LiFePO4/FeS/C composites fiber were prepared via an electrospinning method for use as cathodes in Li-ion batteries. The data presented in this paper showed the effect of electrospinning parameters, including applied voltage, solution flow rate, the concentration of polyvinylpyrrolidone (PVP) (wt%) and a mixed PVP/PEO (polyethylene oxide) (w/w%) polymers on the morphological properties of composites fibers. These data were developed using scanning electron microscopy (SEM). Then, the effect of heat-treatment temperature on fiber morphology was investigated using transmission electron microscopy (TEM). The voltage profile and cycle rate properties of the core-shell LiFePO4/FeS/C composites obtained after various heat treatments were studied.
机译:这项研究中的数据与研究文章“用于锂离子电池的核壳电纺和掺杂LiFePO4 / FeS / C复合纤维”有关[1]。通过静电纺丝法制备了核壳型LiFePO4 / FeS / C复合纤维,用作锂离子电池的阴极。本文提供的数据显示了电纺丝参数的影响,包括施加电压,溶液流速,聚乙烯吡咯烷酮(PVP)的浓度(wt%)和混合的PVP / PEO(聚环氧乙烷)(w / w%)聚合物对复合纤维的形态性能这些数据是使用扫描电子显微镜(SEM)开发的。然后,使用透射电子显微镜(TEM)研究了热处理温度对纤维形态的影响。研究了各种热处理后获得的核-壳型LiFePO4 / FeS / C复合材料的电压分布和循环速率特性。

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