PPy@MWCNT超级电容器应用纳米复合材料

R. Taş, Hamza Dunya, M. Gulen, Kazım Erden Karaoglanli
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引用次数: 0

摘要

聚吡咯(PPy)具有高导电性和化学稳定性等特点,是一种极具潜力的超级电容器电极材料。然而,可以使用额外的添加剂来进一步提高PPy的容量值和储能性能。多壁碳纳米管(MWCNT)是一种具有高比表面积、优异导电性和机械强度的纳米材料,集成到PPy基体中可以提高超级电容器的性能。在这项研究中,进行了合成,表征和性能分析,以评估PPy和mwcnt掺杂PPy在超级电容器中的应用潜力。利用XRD (x射线衍射)分析和SEM(扫描电子显微镜)成像等分析技术对PPy和掺杂PPy的MWCNT进行了表征。通过XRD分析确定了材料的晶体结构和晶体尺寸,结果表明,PPy和MWCNT掺杂PPy的晶体结构得到了保留。利用扫描电镜(SEM)对材料表面形貌进行了分析,发现材料表面结构均匀。利用电化学表征方法对超级电容器的性能进行了评价。PPy和mwcnt掺杂的PPy样品具有高电容值和快速充放电特性。将MWCNT添加剂集成到PPy基体中,使电极在增加表面积的同时保持其化学稳定性。这些结果表明,聚吡咯和MWCNT掺杂聚吡咯具有在超级电容器中提供更有效的能量存储的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PPy@MWCNT Nanocomposite for Supercapacitor Applications
Polypyrrole (PPy) is a potential electrode material for supercapacitors due to its properties suchas high conductivity and chemical stability. However, additional additives can be used to further improvethe capacity values and energy storage performance of PPy. Multi-walled carbon nanotubes (MWCNT) arenanomaterials with properties such as high surface area, excellent conductivity and mechanical strength,and can improve supercapacitor performance when integrated into the PPy matrix. In this study, synthesis,characterization and performance analysis were performed to evaluate the potential of PPy and MWCNTdoped PPy in supercapacitor applications. PPy and MWCNT doped PPy were characterized using analyticaltechniques such as XRD (X-ray diffraction) analysis and SEM (scanning electron microscopy) imaging.XRD analysis was used to determine the crystal structures and crystal sizes of the material and showed thatthe crystal structures of PPy and MWCNT doped PPy were preserved. SEM imaging was used to examinethe surface morphology of the material and it was observed that it has a homogeneous surface structure.Supercapacitor performance was evaluated using electrochemical characterization methods. PPy andMWCNT doped PPy samples exhibited high capacitance values and fast charge-discharge properties. Theintegration of the MWCNT additive into the PPy matrix allowed the electrode to maintain its chemicalstability while increasing the surface area. These results show that PPy and MWCNT doped PPy have thepotential to provide more efficient energy storage in supercapacitors.
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