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Carbon allotropes grafted with poly(pyrrole) derivatives via living radical polymerizations: electrochemical analysis of nano-composites for energy storage

机译:通过活性自由基聚合 与聚吡咯衍生物接枝的碳同素异形体:储能纳米复合材料的电化学分析

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Carbon-based nanomaterials are key components in energy storage devices. Their functions can be tailored by adjusting or developing new synthesis pathways. In this study, two living radical polymerization techniques, an electrochemically-aided atom transfer radical polymerization (e-ATRP) and reversible addition chain transfer polymerization (RAFT), were applied for grafting of carbon allotropes such as multi-walled carbon nanotubes (MWCNT), graphene and single-walled carbon nanohorns (SWCNH) with a 2-(1H-pyrrol-1-yl)ethyl methacrylate. The functionalized carbons were examined as polymerization initiators in the RAFT and e-ATRP synthesis. The FTIR and Raman spectroscopies were used to identify the reaction products at each step of preparation and for final composites. TEM imaging demonstrated that the morphology of composites made via RAFT and e-ATRP using the same carbon were not significantly different. The electrochemical analysis of grafted materials showed an improved gravimetric capacitance as compared to their individual components, revealing the synergy of a double-layer and pseudo-capacitance.
机译:碳基纳米材料是储能设备中的关键组件。它们的功能可以通过调整或开发新的合成途径来定制。在这项研究中,两种活泼自由基聚合技术,一种电化学辅助的原子转移自由基聚合(e-ATRP)和可逆加成链转移聚合(RAFT),被用于接枝碳同素异形体,如多壁碳纳米管(MWCNT) ,石墨烯和单壁碳纳米角(SWCNH)与甲基丙烯酸2-(1 H -吡咯-1-基)乙基。研究了官能化碳在RAFT和e-ATRP合成中作为聚合引发剂的情况。 FTIR和拉曼光谱用于鉴定制备的每个步骤以及最终复合材料的反应产物。 TEM成像表明,使用相同碳通过 RAFT和e-ATRP制备的复合材料的形态无显着差异。接枝材料的电化学分析表明,与它们的单个成分相比,其重量电容有所改善,从而揭示了双层电容和伪电容的协同作用。

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