首页> 外文期刊>Applied Surface Science >Fabrication of high energy density supercapacitor device based on hollow iridium oxide nanofibers by single nozzle electrospinning
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Fabrication of high energy density supercapacitor device based on hollow iridium oxide nanofibers by single nozzle electrospinning

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Herein, we have synthesized iridium oxide (IrO2) nanofibers using electrospinning technique and optimization of annealing temperature is undertaken in order to obtain high quality IrO2 nanofibers. The annealing temperature is varied as 200, 300, 400 and 500 degrees C. The synthesized material has hollow nanofibrous morphology with average diameter similar to 45 nm. The formed nanofibers are amorphous in nature. The X-ray Photoelectron Spectroscopy (XPS) result revealed that synthesized iridium is in +4 oxidation state. The electrochemical performance of IrO2 electrodes showed 2 V potential window in three electrode system using 1 M Sodium sulphate (Na2SO4) aqueous electrolyte. The maximum specific capacitance is obtained for sample annealed at 400 degrees C (705F/g at 1 mA/cm(2)) which is due to the well-developed morphology with complete removal of polymer content. Moreover, a novel solid state symmetric IrO2/IrO2 supercapacitor with a high operating voltage of 2 V is built. The symmetric supercapacitor exhibits an energy density of 59 Wh/kg at a power density of 714 W/kg and an excellent cycling stability. These results demonstrate the potentialities of using IrO2 for symmetric supercapacitor for building high energy and power density devices.
机译:在此,我们使用静电纺丝技术合成氧化铱(IRO2)纳米纤维,并进行退火温度的优化,以获得高质量的IRO2纳米纤维。退火温度变化为200,300,400和500摄氏度。合成材料具有相似直径的中空纳米纤维形态,其平均直径与45nm相似。形成的纳米纤维本质上是无定形的。 X射线光电子能谱(XPS)结果显示合成的铱是+4氧化状态。使用1M硫酸钠(Na 2 SO 4)水电解质,IRO2电极的电化学性能显示为三个电极系统中的2V电位窗。获得最大特异性电容,用于以400℃(705F / cm(2))以400℃(705F / g)退火,这是由于具有完全除去聚合物含量的良好发育形态。此外,建立了具有高工作电压为2V的新型固态对称IRO2 / IRO2超级电容器。对称超级电容器在714W / kg的功率密度下表现出59WH / kg的能量密度和优异的循环稳定性。这些结果证明了使用IRO2进行对称超级电容器的潜力,用于构建高能和功率密度器件。

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  • 来源
    《Applied Surface Science》 |2021年第30期|149102.1-149102.12|共12页
  • 作者单位

    Shivaji Univ Dept Phys Thin Film Mat Lab Kolhapur 416009 Maharashtra India;

    Yeungnam Univ Dept Phys Gyongsan 38541 Gyeongbuk South Korea;

    Chem Engn & Proc Dev Div Natl Chem Lab Pune 411008 Maharashtra India|Sadguru Gadage Maharaj Coll Karad Dept Phys Karad 415110 MS India;

    Yeungnam Univ Dept Phys Gyongsan 38541 Gyeongbuk South Korea;

    Yeungnam Univ Dept Phys Gyongsan 38541 Gyeongbuk South Korea;

    Yeungnam Univ Dept Phys Gyongsan 38541 Gyeongbuk South Korea;

    Shivaji Univ Dept Phys Thin Film Mat Lab Kolhapur 416009 Maharashtra India|Shivaji Univ Sch Nanosci & Technol Kolhapur 416009 Maharashtra India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hollow iridium oxide nanofibers; Symmetric supercapacitor; Aqueous electrolyte;

    机译:氧化铱氧化物纳米纤维;对称超级电容器;水电解质;
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