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Phytogenic generation of NiO nanoparticles as green-electrode material for high performance asymmetric supercapacitor applications

机译:作为高性能不对称超级电容器应用的绿色电极材料的NiO纳米粒子的植物产生

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Herein, we report a simple, cost-effective, one-step green synthesis of nickel oxide nanoparticles (NiO-NPs) from Opuntia ficus-indica leaves extract for asymmetric supercapacitor application. The plant extract derived NiO-NPs exhibits an exceptional half-cell specific capacitance of 644 Fg(-1) (-89.4 mAhg(-1)) at 0.5 Ag-1. The assembled asymmetric NiO-NPs parallel to activated carbon (AC) supercapacitor cell delivers high specific capacitance of -280 Fg(-1) (-38.8 mAhg(-1)), excellent specific energy of 25 Wh kg(-1). In addition, the NiO-NPs vertical bar AC device works until 1.4 V with 0.1 M KOH as electrolyte delivering an excellent rate capability and high coulombic efficiency of 124% even after 10,000 cycles. Moreover, the biomass derived NiO NPs performs better than the other reported NiO based compounds, due to its presence of nickel-rich natural minerals. Through these findings, the use of plant leaves like Opuntia ficus-indica is hereby shown to be low-cost, environment-friendly alternative for preparing NiO- based composites for energy storage applications.
机译:在此,我们报告了一种简单,成本效益的氧化镍纳米颗粒(NiO-NPS)的一步绿色合成,用于来自仙人掌的Ficus-Indega提取物用于不对称超级电容器应用。植物提取物衍生的NiO-NPS在0.5%Ag-1的情况下表现出644fg(-1)(-89.4mAhg(-1))的特殊半电池特异性电容。与活性炭(AC)的组装不对称NiO-NIO-NIO-NIO-NIO-NPS超电容器电池可提供高比电容为-280FG(-1)(-38.8mAhg(-1)),优异的特定能量为25WH kg(-1)。此外,NIO-NPS垂直条AC装置为1.4V,甚至在10,000次循环之后提供优异的速率能力和124%的高速率能力和高库仑效率。此外,由于其存在富含镍的天然矿物质,生物质衍生的NiO NIO表现优于其他报道的基于NiO的化合物。通过这些调查结果,特此认为使用植物叶片如嗅觉,如低成本,环保的替代方案,用于制备基于NIO的复合材料,用于储能应用。

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