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Surfactant-Free Synthesis of Nb 2 O 5 Nanoparticles Anchored Graphene Nanocomposites with Enhanced Electrochemical Performance for Supercapacitor Electrodes

机译:Nb 2 O 5纳米粒子的表面活性剂合成锚定石墨烯纳米复合材料,具有增强的超级电容器电极的电化学性能

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Nb 2 O 5 /graphene nanocomposites without any surfactant are synthesized by an in situ microwave irradiation technique. Structural and morphological studies revealed that the prepared composites were composed of Nb 2 O 5 nanoparticles intercalated into the graphene sheet. The thermal stability of graphene oxide, Nb 2 O 5 , and Nb 2 O 5 /graphene nanocomposite was studied by the TGA. The electrochemical properties are assessed by cyclic voltammetry, chronopotentiometry and electrochemical impedance spectroscopy analyses. The specific capacitance of Nb 2 O 5 /graphene nanocomposites is greater (633 Fg ?1 ) than pure Nb 2 O 5 nanoparticles (221 Fg ?1 ) and graphene (290 Fg ?1 ) at a current density of 1 Ag ?1 . The long-term cyclic measurement confirms higher cyclic stability of the nanocomposite with capacitance retention of 99.3% after 5000 cycles without performance degradation. The composites exhibit higher electrochemical conductivity and allow effective ions and charge transport over the entire electrode surface with aqueous electrolyte. The electrochemical study suggests that Nb 2 O 5 /graphene nanocomposites have the potential to be an effective electrode for superior performance supercapacitor applications.
机译:通过原位微波辐射技术合成没有任何表面活性剂的Nb 2 O 5 /石墨烯纳米复合材料。结构和形态学研究表明,制备的复合材料由Nb 2 O 5纳米颗粒构成,嵌入到石墨烯片中。通过TGA研究了石墨烯氧化物,Nb 2 O 5和Nb 2 O 5 /石墨烯纳米复合材料的热稳定性。通过循环伏安法,计时管测量法和电化学阻抗光谱分析评估电化学性质。 Nb 2 O 5 /石墨烯纳米复合材料的特定电容比纯Nb 2 O 5纳米颗粒(221fg othβ1)和石墨烯(290 fg oth'1)的电流密度为1Agα1的比例更大(633fg≤1)。长期循环测量在5000次循环后,在5000次循环后,纳米复合材料的循环稳定性较高,纳米复合材料的电容保留而没有性能降解。复合材料具有更高的电化学电导率,并允许有效离子和电荷输送在整个电极表面上用水性电解质。电化学研究表明,Nb 2 O 5 /石墨烯纳米复合材料具有用于优异的性能超级电容器应用的有效电极。

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