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首页> 外文期刊>Scientific reports. >Performance of Solid-state Hybrid Energy-storage Device using Reduced Graphene-oxide Anchored Sol-gel Derived Ni/NiO Nanocomposite
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Performance of Solid-state Hybrid Energy-storage Device using Reduced Graphene-oxide Anchored Sol-gel Derived Ni/NiO Nanocomposite

机译:还原型氧化石墨烯锚固的溶胶/凝胶Ni / NiO纳米复合材料固态混合储能装置的性能

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The influence of (nickel nitrate/citric acid) mole ratio on the formation of sol-gel end products was examined. The formed Ni/NiO nanoparticle was anchored on to reduced graphene-oxide (rGO) by means of probe sonication. It was found that the sample obtained from the (1:1) nickel ion: citric acid (Ni2+: CA) mole ratio resulted in a high specific capacity of 158?C/g among all (Ni2+: CA) ratios examined. By anchoring Ni/NiO on to the rGO resulted in enhanced specific capacity of as high as 335?C/g along with improved cycling stability, high rate capability and Coulombic efficiency. The high conductivity and increased surface area seemed responsible for enhanced electrochemical performances of the Ni/NiO@rGO nanocomposite. A solid-state hybrid energy-storage device consisting of the Ni/NiO@rGO (NR2) as a positive electrode and the rGO as negative electrode exhibited enhanced energy and power densities. Lighting of LED was demonstrated by using three proto-type (NR2 (+)|| rGO(?)) hybrid devices connected in series.
机译:考察了(硝酸镍/柠檬酸)摩尔比对溶胶-凝胶终产物形成的影响。借助探针超声处理将形成的Ni / NiO纳米颗粒固定在还原的氧化石墨烯(rGO)上。结果发现,从(1:1)镍离子:柠檬酸(Ni2 +:CA)摩尔比获得的样品在所有所考察的(Ni2 +:CA)比中均具有158?C / g的高比容。通过将Ni / NiO固定在rGO上,可提高比容量高达335?C / g,并改善循环稳定性,高倍率性能和库仑效率。高电导率和增加的表面积似乎是Ni / NiO @ rGO纳米复合材料电化学性能增强的原因。由Ni / NiO @ rGO(NR2)作为正电极和rGO作为负电极组成的固态混合储能装置具有增强的能量和功率密度。通过使用三个串联的原型(NR2(+)|| rGO(?))混合设备演示了LED的照明。

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