制备技术对用于储能应用的 PVdF-HFP/P123 共混聚合物膜的结构和电气性能的影响

IF 7.5 Q1 CHEMISTRY, PHYSICAL Applied Surface Science Advances Pub Date : 2024-02-22 DOI:10.1016/j.apsadv.2024.100583
Pavithra S , Sasikumar Moorthy , Pauline Sheeba S , Brusly Solomon A , Senthil Kumar P , Sakunthala A
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引用次数: 0

摘要

探索具有理想性能的聚合物共混膜是一个非常重要的研究课题,因为它使聚合物共混膜成为电池技术的关键组成部分。然而,共混膜无法同时满足高电气绝缘性和离子导电性的要求。在此,我们报告了基于 PVdF-HFP 的多孔聚合物膜与 P123 聚合物的混合物,该混合物是通过相反转技术和溶液浇铸技术制备的,并进行了比较。与传统的溶液浇注法相比,通过相反转工艺制备的多孔 PVdF-HFP 与 P123 基体共混膜的性能有了显著提高,这主要是由于 PVdF-HFP 的无组织结晶度增加,从而提高了 PVdF-HFP/P123 的离子导电性。更重要的是,我们的研究揭示了 PVdF-HFP/P123 混合基质在采用相反转方法制备时,除了具有结晶度和高离子传导性的效果外,还能产生具有更高孔隙密度的均匀孔隙。我们将此归因于混合膜中电解质吸收和阳离子传输的显著增强。这有助于获得 7.06 × 10-5 S/cm 的高离子电导率和 2.8 V 的电化学稳定性,而溶液浇铸法则分别显示出 1.63 × 10-6 S/cm 的低离子电导率和 2.2 V 的电化学稳定性。利用相反转工艺制备的膜制备了一种对称超级电容器器件,在电流密度为 0.25 A/g 时,比电容高达 80 F/g,在 0.5 A/g 时比电容保持率为 90.51%。在功率密度为 0.375 W/kg 时,能量密度可达 90.9 W/kg。
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Influence of preparation techniques on the structural and electrical properties of PVdF-HFP/P123 blend polymer membranes for energy storage applications

Exploration of blend polymer membrane with desire performances is a highly essential research topic because it makes them as key component of the battery technologies. However, the blend membrane cannot simultaneously meet out the high electrical insulation and ion conductivity. Here, we report porous PVdF-HFP based polymer membrane blended with P123 polymer which is prepared by phase inversion technique and along with solution casting technique for comparison. Especially, the major improvements can be claimed with porous PVdF-HFP blend with P123 matrix by phase inversion process that could be mainly due to increasing the disorganize crystallinity of the PVdF-HFP, thereby enhancing the ionic conductivity of PVdF-HFP/P123 than the same prepared by traditional solution casting. More importantly, our studies reveals that, besides having an effect of crystallinity and high ionic conduction PVdF-HFP/P123 blend matrix yield homogeneous pores with higher pore density when prepared by phase inversion approach. We attribute this to remarkable enhancement in higher electrolyte uptake and higher cation transport in the blend membrane. This facilitates high ionic conductivity of 7.06 × 10−5 S/cm and electrochemical stability of 2.8 V,while the solution casting approach display low ionic conductivity of 1.63 × 10−6 S/cm and electrochemical stability of 2.2 V, respectively. A symmetric supercapacitor device is fabricated with the membrane prepared by phase inversion process, resulting in a high specific capacitance of 80 F/g at the current density of 0.25 A/g with 90.51% specific capacitance retention at 0.5 A/g. The energy density of 90.9 W/kg can be achieved at the power density of 0.375 W/kg.

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CiteScore
8.10
自引率
1.60%
发文量
128
审稿时长
66 days
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