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首页> 外文期刊>ChemElectroChem >Electrochemical Behaviour of Lithium, Sodium and Potassium Ion Electrolytes in a Na0.33V2O5 Symmetric Pseudocapacitor with High Performance and High Cyclic Stability
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Electrochemical Behaviour of Lithium, Sodium and Potassium Ion Electrolytes in a Na0.33V2O5 Symmetric Pseudocapacitor with High Performance and High Cyclic Stability

机译:具有高性能和高循环稳定性的Na0.33V2O5对称假壳体中锂,钠和钾离子电解质的电化学行为

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摘要

A high-performance symmetric supercapacitor was fabricated using a Na0.33V2O5 nanocomposite synthesized by means of a simple co-precipitation technique. The structural and morphological investigation showed that the synthesized Na0.33V2O5 nanocomposite exhibited a monoclinic structure with a nanorod-like morphology. The electrochemical properties of the Na0.33V2O5 symmetric supercapacitor were studied utilizing three different aqueous electrolytes, such as 1 M of LiCl, NaCl and KCl, respectively. Interestingly, the fabricated Na0.33V2O5 symmetric supercapacitors exhibited excellent electrochemical capacitance behaviour in all the electrolytes with a maximum specific capacitance value of 168 Fg(-1) in 1 M LiCl, 146 Fg(-1) in 1 M NaCl and 132 Fg(-1) in 1 M KCl electrolytes at 0.5 Ag-1 discharge current density. In addition, Na0.33V2O5 symmetric supercapacitors demonstrated an excellent cyclic stability in 1 M NaCl electrolyte with high capacitance retention of approximately 81% after 50000 charge/discharge cycles.
机译:使用通过简单的共沉淀技术合成的Na0.33V2O5纳米复合材料制造了一种高性能对称的超级电容器。结构和形态学研究表明,合成的Na0.33V2O5纳米复合材料表现出具有纳米棒状形态的单斜晶体结构。利用三种不同的含水电解质,例如1μm的LiCl,NaCl和Kcl,研究了Na0.33V2O5对称超级电容器的电化学性质。有趣的是,制造的Na0.33V2O5对称超级电容器在1M LiCl,132℃下的1M LiCl,146 fg(-1)中具有168 fg(-1)的最大特定电容值的所有电解质中出现优异的电化学电容性能。 -1)在1M KCl电解质中以0.5Ag-1放电电流密度。此外,Na0.33V2O5对称超级电容器在1M NaCl电解质中显示出优异的环状稳定性,在50000充电/放电循环后高电容保持约81%。

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