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一种以p型导电聚合物为高性能材料用于电化学超级电容器的CuCr₂O₄纳米复合材料的新型电合成路线。

A novel route for electrosynthesis of CuCr(2)O(4) nanocomposite with p-type conductive polymer as a high performance material for electrochemical supercapacitors.

作者信息

Shayeh Javad Shabani, Sadeghinia Mohammad, Siadat Seyed Omid Ranaei, Ehsani Ali, Rezaei Mehran, Omidi Meisam

机构信息

Protein Research Center, Shahid Beheshti University, GC, Tehran, Iran.

Department of Chemistry, Faculty of Science, University of Tehran, Tehran, Iran.

出版信息

J Colloid Interface Sci. 2017 Jun 15;496:401-406. doi: 10.1016/j.jcis.2017.02.010. Epub 2017 Feb 9.

Abstract

In this work, supercapacitive performance of polypyrrole copper chromate nano particles (Ppy/CuCrO NPs) was studied. CuCrO NPs with the average size of 20nm were synthesized simply by hydrothermal method and the composite electrodes were then electropolymerized on the surface of glassy carbon electrode. Common surface analysis techniques such as scanning electron microscopy (SEM), transmission electron microscopy(TEM) and Fourier transform infrared (FTIR) were used to study the morphology and structure of the composite. Furthermore, for electrochemical evaluation of composite electrodes, techniques including cyclic voltammetry (CV), galvanostatic charge discharge (CD) and impedance spectroscopy (EIS) were used. Using cyclic voltammetry, the specific capacitance values of Ppy and Ppy/CuCrO NPs were calculated to be 109 and 508 F g, respectively. Results show that using CuCrO NPs in the structure of polymeric films led to increased specific capacitance of composite electrodes more than four times that of poly pyrrole. Increasing the conductivity and stability of composite electrodes through continuous cycles are the other advantages of using CuCrO NPs as active materials in a polymeric structure.

摘要

在这项工作中,研究了聚吡咯铜铬酸盐纳米颗粒(Ppy/CuCrO NPs)的超级电容性能。通过水热法简单合成了平均粒径为20nm的CuCrO NPs,然后在玻碳电极表面电聚合复合电极。使用扫描电子显微镜(SEM)、透射电子显微镜(TEM)和傅里叶变换红外光谱(FTIR)等常见的表面分析技术来研究复合材料的形态和结构。此外,对于复合电极的电化学评估,使用了循环伏安法(CV)、恒电流充放电(CD)和阻抗谱(EIS)等技术。通过循环伏安法计算得出,Ppy和Ppy/CuCrO NPs的比电容值分别为109和508 F g。结果表明,在聚合物薄膜结构中使用CuCrO NPs可使复合电极的比电容增加,比聚吡咯的比电容高出四倍以上。通过连续循环提高复合电极的导电性和稳定性是在聚合物结构中使用CuCrO NPs作为活性材料的其他优点。

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