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首页> 外文期刊>RSC Advances >A simple strategy to prepare a layer-by-layer assembled composite of Ni-Co LDHs on polypyrrole/rGO for a high specific capacitance supercapacitor
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A simple strategy to prepare a layer-by-layer assembled composite of Ni-Co LDHs on polypyrrole/rGO for a high specific capacitance supercapacitor

机译:一种简单的策略,用于制备逐层组装的Ni-CoLDHS上的Polypyrol / Rgo用于高比电容超级电容器

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摘要

A facile and novel electrode material of nickel-cobalt layered double hydroxides (Ni-Co LDHs) layered on polypyrrole/reduced graphene oxide (PPy/rGO) is fabricated for a symmetrical supercapacitor via chemical polymerization, hydrothermal and vacuum filtration. This conscientiously layered composition is free from any binder or surfactants which is highly favorable for supercapacitors. The PPy/rGO serves as an ideal backbone for Ni-Co LDHs to form a free-standing electrode for a high-performance supercapacitor and enhanced the overall structural stability of the film. The well-designed layered nanostructures and high electrochemical activity from the hexagonal-flakes like Ni-Co LDHs provide large electroactive sites for the charge storage process. The specific capacitance (1018 F g(-1) at 10 mV s(-1)) and specific energy (46.5 W h kg(-1) at 464.9 W kg(-1)) obtained for the PPy/rGO|Ni-Co LDHs symmetrical electrode in the current study are the best reported for the two-electrode system for PPy- and LDHs-based composites. The outstanding performance in the prepared LBL film is a result of the LBL architecture of the film and the combined effect of redox reaction and electrical double layer capacitance.
机译:通过化学聚合,水热和真空过滤,制造在聚吡咯/克莱克烯氧化物(PPY / RGO)上层叠在聚吡咯/克莱克烯氧化物(PPY / RGO)上的镍 - 钴层叠双氢氧化物(Ni-Co LDH)的容易和新的电极材料。这种认真的分层组合物免于任何粘合剂或表面活性剂,这对于超级电容器非常有利。聚吡咯/ RGO用作镍 - 钴的LDH的理想骨架以形成用于一个高性能的超级电容器一个独立的电极,提高了膜的整体结构稳定性。富裕的分层纳米结构和来自六边形薄片的高电化学活性,如Ni-CoLDHS,为电荷储存过程提供大的电活性部位。在PPY / RGO的464.9W kg(-1)的特定电容(1018V(-1))和特定能量(46.5Wh kg(-1))下的特定电容(46.5 w h kg(-1))。目前研究中的CO LDHS对称电极是用于PPY和LDHS基复合材料的双电极系统的最佳报道。制备的LBL膜中的出色性能是薄膜LBL架构的结果和氧化还原反应和电双层电容的组合效应。

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    《RSC Advances》 |2019年第69期|共9页
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  • 正文语种 eng
  • 中图分类 化学;
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