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添加胍盐的具有卓越功率密度的PVP/PEO固体聚合物电解质的电化学性能

Electrochemical Performance of Guanidinium Salt-Added PVP/PEO Solid Polymer Electrolyte with Superior Power Density.

作者信息

Murugan Anbazhagan, Siva Vadivel, Shameem Abdul Samad, Vijayakumar Paranthaman, Viji Arangarajan, Lee Jintae, Palanisamy Govindasamy

机构信息

Department of Science and Humanities, Karpagam College of Engineering, Coimbatore 641032, Tamil Nadu, India.

Department of Physics, Centre for Energy and Environment, Karpagam Academy of Higher Education, Coimbatore 641021, Tamil Nadu, India.

出版信息

Polymers (Basel). 2025 Jan 15;17(2):206. doi: 10.3390/polym17020206.

Abstract

Solid polymer electrolytes (SPEs) for symmetrical supercapacitors are proposed herein with activated carbon as electrodes and optimized solid polymer electrolyte membranes, which serve as the separators and electrolytes. We propose the design of a low-cost solid polymer electrolyte consisting of guanidinium nitrate (GuN) and poly(ethylene oxide) (PEO) with poly(vinylpyrrolidone) (PVP). Using the solution casting approach, blended polymer electrolytes with varying GuN weight percentage ratios of PVP and PEO are prepared. On the blended polymer electrolytes, structural, morphological, vibrational, and ionic conductivity are investigated. The solid polymer electrolytes' morphology and level of roughness are examined using an FESEM. The interlinking bond formation between the blended polymers and the GuN salt is verified by FTIR measurements, indicating that the ligands are chemically complex. We found that, up to 20 wt.% GuN, the conductivity value increased (1.84 × 10 S/cm) with an increase in mobile charge carriers. Notably, the optimized PVP/PEO/20 wt.% solid polymer electrolyte was fabricated into a solid-state symmetrical supercapacitor device, which delivered a potential window of 0 to 2 V, a superior energy density of 3.88 Wh kg, and a power density of 1132 W kg.

摘要

本文提出了用于对称超级电容器的固态聚合物电解质(SPEs),其以活性炭为电极,并采用了经过优化的固态聚合物电解质膜,该膜同时充当隔膜和电解质。我们提出了一种由硝酸胍(GuN)、聚环氧乙烷(PEO)和聚乙烯吡咯烷酮(PVP)组成的低成本固态聚合物电解质的设计方案。采用溶液浇铸法,制备了具有不同GuN与PVP及PEO重量百分比比例的共混聚合物电解质。对共混聚合物电解质的结构、形态、振动和离子电导率进行了研究。使用场发射扫描电子显微镜(FESEM)检查了固态聚合物电解质的形态和粗糙度水平。通过傅里叶变换红外光谱(FTIR)测量验证了共混聚合物与GuN盐之间形成的交联键,表明配体发生了化学络合。我们发现,在GuN含量高达20 wt.%时,随着移动电荷载流子的增加,电导率值增加(1.84×10 S/cm)。值得注意的是,将优化后的PVP/PEO/20 wt.%固态聚合物电解质制成了固态对称超级电容器装置,其提供了0至2 V的电位窗口、3.88 Wh kg的优异能量密度和1132 W kg的功率密度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5bc/11769341/db773fced587/polymers-17-00206-g001.jpg

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