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首页> 外文期刊>RSC Advances >One-pot mechanochemical exfoliation of graphite and in situ polymerization of aniline for the production of graphene/polyaniline composites for high-performance supercapacitors
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One-pot mechanochemical exfoliation of graphite and in situ polymerization of aniline for the production of graphene/polyaniline composites for high-performance supercapacitors

机译:石墨石墨的一锅机械化学剥离及苯胺的原位聚合为高性能超级电容器生产石墨烯/聚苯胺复合材料

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摘要

Graphene/polyaniline composites have attracted considerable attention as high-performance supercapacitor electrode materials; however, there are still numerous challenges for their practical applications, such as the complex preparation process, high cost, and disequilibrium between energy density and power density. Herein, we report an efficient method to produce graphene/polyaniline composites via a one-pot ball-milling process, in which aniline molecules act as both the intercalator for the exfoliation of graphite and the monomer for mechanochemical polymerization into polyaniline clusters on the in situ exfoliated graphene sheets. The graphene/polyaniline composite electrode delivered a large specific capacitance of 886 F g ~(?1) at 5 mV s ~(?1) with a high retention of 73.4% at 100 mV s ~(?1) . The high capacitance and rate capability of the graphene/polyaniline composite can contribute to the fast electron/ion transfer and dominantly capacitive contribution because of the synergistic effects between the conductive graphene and pseudocapacitive polyaniline. In addition, a high energy density of 40.9 W h kg ~(?1) was achieved by the graphene/polyaniline-based symmetric supercapacitor at a power density of 0.25 kW kg ~(?1) , and the supercapacitor also maintained 89.1% of the initial capacitance over 10?000 cycles.
机译:石墨烯/聚酰氯复合材料吸引了相当大的关注,作为高性能超级电容器电极材料;然而,它们的实际应用仍然存在许多挑战,例如复杂的制备过程,高成本和能量密度之间的不平衡和不平衡。在此,我们报告了一种有效的方法,以通过单罐球磨方法生产石墨烯/聚苯胺复合材料,其中苯胺分子作为嵌入式石墨的嵌入剂和机械化学聚合中的单体,以原位原位上的聚苯胺聚集体剥落的石墨烯片。石墨烯/聚苯胺复合电极在5mV S〜(α1)的大特定电容为886f g〜(α1),高保留为100mV S〜(α1)73.4%。石墨烯/聚苯胺复合材料的高电容和速率能力可以有助于快速电子/离子转移和主要电容贡献,因为导电石墨烯和假偶联聚苯胺之间的协同效应。此外,通过基于石墨烯/聚苯胺的对称超级电容器为0.25kW kg〜(α1)的高能量密度,以0.25kW kg〜(α1),并且超级电容器也保持89.1%初始电容超过10?000周期。

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