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Crystal structures of electrospun PVDF membranes and its separator application for rechargeable lithium metal cells

机译:电纺PVDF膜的晶体结构及其在可充电锂金属电池中的分离应用

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摘要

An electrospinning method was used to prepare electrospun PVDF-based membranes (EPMs) for battery separators applications. The morphology of the EPMs was investigated by scanning electron microscopy (SEM). The relations between applied voltage and average fiber diameter (AFD) under certain electrospinning conditions were discussed. The thermal properties and crystal structure of the EPMs also were investigated by differential scanning calorimetry (DSC), and wide-angle X-ray diffraction (WAXD). Due to soften PVDF fibers in high temperature, the thermal treated EPMs can form an interconnected web structure, which greatly improves physical properties. Compared with Celgard™ 2400 (PP separator), the cell with EPM shows better cycling ability of CV and charge-discharge performance with little capacity loss after 50 cycles at C/2 rate.
机译:使用静电纺丝方法来制备用于电池隔膜应用的静电纺基于PVDF的膜(EPM)。通过扫描电子显微镜(SEM)研究了EPM的形态。讨论了在某些静电纺丝条件下施加电压与平均纤维直径(AFD)之间的关系。还通过差示扫描量热法(DSC)和广角X射线衍射(WAXD)研究了EPM的热性能和晶体结构。由于在高温下会软化PVDF纤维,因此经过热处理的EPM可以形成相互连接的纤网结构,从而极大地改善了物理性能。与Celgard™2400(PP隔板)相比,具有EPM的电池在C / 2速率下经过50次循环后,显示出更好的CV循环能力和充放电性能,而容量损失却很小。

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