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MXene Based Electrospun Polymer Electrolyte fibers: Fabrication and Enhanced Ionic Conductivity

机译:MXene基静电纺丝聚合物电解质纤维:制备和增强离子电导率

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In the present exploration, MXene (Ti3C2Tx) based composite polymer electrolytes (CPEs) are fabricated by electrospinning technique to make free-standing fiber films. In this process, four different composite polymer electrolytes (CPEs) are synthesized by varying the MXene content from 0 mg to 60 mg in poly-acrylonitrile (PAN) along with NaPF6 solution. The electron microscopic studies reveal the layered morphology of synthesized MXene samples. Further, MXene based CPE fibers exhibit lengths of several micro-meters with widths < 3 mu m. The linear sweep voltammetry results manifest the electrochemical stability of CPES up to 3.3 V. The key studies in this research work are the incorporation of sodium-based salts which are more abundant, less expensive, less reactive, and environment friendly than other Li based salts, also the highlighted findings have been assigned to the impedance and the DC polarization, which illustrate the enhanced ionic conductivities (of the order of 10(-6) S/cm) for the 20 mg MXene based CPE sample. Further, the Fourier Transform Infra-Red (FTIR) spectroscopy analysis and its deconvolution studies have been carried out, which depict the enhancement in the free ion concentration in the MXene based CPEs samples.
机译:在目前的探索中,采用静电纺丝技术制备了MXene(Ti3C2Tx)基复合聚合物电解质(CPEs)来制备独立式纤维膜。在此过程中,通过将聚丙烯腈 (PAN) 和 NaPF6 溶液中的 MXene 含量从 0 mg 更改为 60 mg,合成了四种不同的复合聚合物电解质 (CPE)。电子显微镜研究揭示了合成MXene样品的层状形貌。此外,基于MXene的CPE光纤的长度为几微米,宽度<3μm。线性扫描伏安法结果表明,CPES在高达3.3 V时具有电化学稳定性。本研究工作的主要研究是掺入钠基盐,钠基盐比其他锂基盐更丰富、更便宜、反应性更低且对环境友好,此外,突出的发现还分配给阻抗和直流极化,这说明了 20 mg MXene 基 CPE 样品的离子电导率增强(约为 10(-6) S/cm)。此外,还进行了傅里叶变换红外(FTIR)光谱分析及其反卷积研究,描述了基于MXene的CPEs样品中自由离子浓度的增强。

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