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Electrochemically Grown Potassium Ferrocyanide Doped Conducting Polymeric Rhodamine b Nanodots Modified Graphite Based Fluorescence Supercapacitors

机译:电化学生长的亚铁氰化钾掺杂导电聚合物若丹明b纳米点修饰的石墨基荧光超级电容器

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Quantum dots based supercapacitors created a dramatic improvement in energy storage system. Herein, we reports a novel member of fluorescent supercapacitor has been fabricated from rhodamine b dye. In this work, Potassium ferrocyanide doped in the polymeric rhodamine b nanodots which were directly grown at the surface of graphite electrodes using cyclic voltammetry. Potassium ferrocyanide doped polymeric rhodamine b nanodots enhanced the specific conductance (320.0 F/g), and better long term cycling stability which are 2 to 3 times higher than individual polymeric rhodamine b nanodots as well as potassium ferrocyanide modified graphite electrodes. Interestingly, the electrochemical activity of the fluorescent Potassium ferrocyanide doped in the polymeric rhodamine b nanodots could be easily monitored by photoluminescence as well as voltammetric methods. These unique features of proposed hybrid fluorescent nanodots makes it smart nanomaterial to enhance the performance of supercapacitors. This organicinorganic composite nanodots material based electrode shows a promising future for energy storage with high energy density, high power density and excellent cycle life.
机译:基于量子点的超级电容器极大地改善了储能系统。在本文中,我们报道了一种新型的荧光超级电容器,它是由若丹明b染料制成的。在这项工作中,亚铁氰化钾掺杂在聚合物若丹明b纳米点中,该纳米点直接使用循环伏安法在石墨电极表面生长。掺杂亚铁氰化钾的聚合物若丹明b纳米点提高了比电导率(320.0 F / g),并具有更好的长期循环稳定性,比单个聚合物若丹明b纳米点和亚铁氰化钾改性的石墨电极高2至3倍。有趣的是,掺杂在聚合物若丹明b纳米点中的荧光亚铁氰化钾的电化学活性可以通过光致发光和伏安法轻松监测。提出的混合荧光纳米点的这些独特功能使其成为智能纳米材料,可以增强超级电容器的性能。这种基于有机无机复合纳米点材料的电极具有高能量密度,高功率密度和出色的循环寿命,在储能方面显示出广阔的前景。

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