生物质多孔活性炭对超级电容器应用电极材料聚苯胺的影响

IF 1.4 4区 综合性期刊 Q2 MULTIDISCIPLINARY SCIENCES
Murugan Vinayagam, Rajendran Suresh Babu, Arumugam Sivasamy, Ana Lucia Ferreira de Barros
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引用次数: 0

摘要

研究的重点是无患子生物质多孔活性炭(STAC)与导电聚合物聚苯胺(PA)的结合对实现高比电容超级电容器的影响。为了制备具有不同 STAC 重量比的 PA@STAC 复合材料(PA@STAC5、PA@STAC10、PA@STAC15、PA@STAC30 和 PA@STAC50),我们采用了一种实用的原位化学氧化聚合方法。所观察到的 PA@STAC 复合材料比电容和长期稳定性的改善可归因于 PA 和 STAC 的协同作用。因此,与原始聚合物相比,在复合材料中加入 STAC 使电容增加了两倍多。具体来说,在电流密度为 1 A g-1 时,PA@STAC30 复合材料的最大比电容为 224 F g-1。PA@STAC30 的快速 GCD 特性归功于其良好的多孔性和组织结构形态,短离子扩散允许其在 GCD 循环期间自由进入。这项研究强调,通过直接添加导电多孔碳材料,可显著提高伪电容器的电容电势和耐用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Influence of Biomass-derived Porous Activated Carbon on Polyaniline as Electrode Material for Supercapacitor Applications

Influence of Biomass-derived Porous Activated Carbon on Polyaniline as Electrode Material for Supercapacitor Applications

Influence of Biomass-derived Porous Activated Carbon on Polyaniline as Electrode Material for Supercapacitor Applications

The investigation focused on the impact of porous activated carbon derived from Sapindus trifoliatus biomass (STAC) in conjunction with a conducting polymer, polyaniline (PA), aimed at achieving high specific capacitance supercapacitors. To create the PA@STAC composites with different weight ratios of STAC (PA@STAC5, PA@STAC10, PA@STAC15, PA@STAC30, PA@STAC50), a practical in situ chemical oxidative polymerization method was employed. The observed improvements in specific capacitance and long-term stability of PA@STAC composites can be attributed to the synergistic effects of both PA and STAC. Consequently, the inclusion of STAC in the composite led to a more than twofold increase in capacitance compared to the original polymers. Specifically, the maximum specific capacitance for the PA@STAC30 composite was 224 F g−1 at a current density of 1 A g−1. The rapid GCD characteristic of PA@STAC30 is attributed to the good porosity and well-organized architecture morphology with short-ion diffusion that allow for free access during the GCD cycles. This study underscores the notable increase in capacitance potential and the enhanced durability of pseudocapacitors achieved through the straightforward addition of a conductive porous carbon material.

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来源期刊
CiteScore
4.00
自引率
5.90%
发文量
122
审稿时长
>12 weeks
期刊介绍: The aim of this journal is to foster the growth of scientific research among Iranian scientists and to provide a medium which brings the fruits of their research to the attention of the world’s scientific community. The journal publishes original research findings – which may be theoretical, experimental or both - reviews, techniques, and comments spanning all subjects in the field of basic sciences, including Physics, Chemistry, Mathematics, Statistics, Biology and Earth Sciences
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