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Comparative Study of Individual and Mixed Aqueous Electrolytes with ZnFe2O4 Nano–flakes Thin Film as an Electrode for Supercapacitor Application

机译:与Znfe2O4纳米粉薄膜的单个和混合水解物的比较研究,作为超级电容器应用的电极

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In the present work, ZnFe2O4 nano-flakes thin films are grown on stainless steel substrate using mechanochemical approach. The prepared thin films are characterized and used as working electrodes for supercapacitor application. Investigation for an ideal electrolyte is systematically carried out by comparing three aqueous electrolytes such as LiOH, NaOH, KOH (1 M) and their binary mixtures (1:1 v/v of 1 M each electrolyte) on the basis of their supercapacitive performances. Among the electrolytes, 1 M KOH is found to be an ideal electrolyte, which demonstrates higher specific capacitance (433 F g~(-1)), cycle stability (91% retention up to 4000 cycles), energy density (86 Wh kg~(-1)), respectively. The binary mixtures of LiOH-NaOH, NaOHKOH and LiOH-KOH electrolytes show relatively less specific capacitance of 106, 146 and 180 F g~(-1), respectively. The use of mixed electrolytes and underlying factors affecting the performance are investigated in detail for the first time. The physical parameters such as conductivity, density, viscosity, contact angle and hydrated ionic radius of aqueous electrolytes influencing the specific capacitance of the ZnFe2O4 nano-flakes based electrode is studied.
机译:在目前的工作中,使用机械化学方法在不锈钢基材上生长Znfe2O4纳米薄膜薄膜。制备的薄膜被描述并用作超级电容器应用的工作电极。通过比较LiOH,NaOH,KOH(1 M)等三个水性电解质(1:1 v/v的每种电解质1 m),根据其超级能效性能进行比较,对理想电解质的研究进行了系统的研究。在电解质中,发现1 M KOH是理想的电解质,它表现出更高的特异性电容(433 F G〜(-1)),循环稳定性(91%保留率最高4000个周期),能量密度(86 WH kg〜 (-1)分别。 Lioh-NaOH,NaoHkoH和LiOH-KOH电解质的二进制混合物分别显示出相对较小的106、146和180 F G〜(-1)的特异性电容。首次详细研究了混合电解质和影响性能的基本因素。研究了基于ZnFe2O4纳米 - 湖泊电极的特定电容的物理参数,例如电导率,密度,粘度,接触角和水合的离子半径。

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