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Ex Situ Fabrication of Polypyrrole-Coated Core-Shell Nanoparticles for High-Performance Coin Cell Supercapacitor

机译:用于高性能纽扣电池超级电容器的聚吡咯涂层核壳纳米粒子的非原位制备

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摘要

Silica-conducting polymer (SiO2-CP) has the advantages of high electrical conductivity, structural stability, and the facile formation of thin-film. This work deals with the preparation and optimization of polypyrrole (PPy)-encapsulated silica nanoparticles (SiO2 NPs) using an ex situ method. The SiO2-PPy core-shell NPs prepared by the ex situ method are well dispersed in water and facilitate the mass production of thin-film electrodes with improved electrical and electrochemical performances using a simple solution process. As-prepared SiO2-PPy core-shell NPs with different particle sizes were applied to electrode materials for two-electrode supercapacitors based on coin cell batteries. It was confirmed that the areal capacitance (73.1 mF/cm2), volumetric capacitance (243.5 F/cm3), and cycling stability (88.9% after 5000 cycles) of the coin cell employing the ex situ core-shell was superior to that of the conventional core-shell (4.2 mF/cm2, 14.2 mF/cm3, and 82.2%). Considering these facts, the ex situ method provides a facile way to produce highly-conductive thin-film electrodes with enhanced electrical and electrochemical properties for the coin cell supercapacitor application.
机译:二氧化硅导电聚合物(SiO2-CP)具有高导电性,结构稳定性和易于形成薄膜的优点。这项工作涉及使用异位方法制备和优化聚吡咯(PPy)包裹的二氧化硅纳米颗粒(SiO2 NPs)。通过异位方法制备的SiO2-PPy核壳NPs可以很好地分散在水中,并可以通过简单的溶液处理工艺大量生产具有改善的电和电化学性能的薄膜电极。将制备好的具有不同粒径的SiO2-PPy核壳NPs应用于基于纽扣电池的两电极超级电容器的电极材料。确认了其的面积电容(73.1 mF / cm 2 ),体积电容(243.5 F / cm 3 )和循环稳定性(5000次循环后为88.9%)采用异位核壳的纽扣电池优于常规核壳(4.2 mF / cm 2 ,14.2 mF / cm 3 和82.2% )。考虑到这些事实,非原位方法提供了一种容易的方法来生产用于硬币电池超级电容器应用的,具有增强的电和电化学特性的高导电薄膜电极。

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