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首页> 外文期刊>CERAMICS INTERNATIONAL >Iron oxide supercapacitor of high volumetric energy and power density using binder-free supersonic spraying and self-healing rGO
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Iron oxide supercapacitor of high volumetric energy and power density using binder-free supersonic spraying and self-healing rGO

机译:采用无粘结剂超音速喷涂和自愈rGO的高体积能量和功率密度的氧化铁超级电容器

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摘要

Iron oxide (Fe2O3) nanoparticles and reduced graphene oxide (rGO) sheets were supersonically sprayed onto a nickel substrate to fabricate flexible supercapacitors. The supersonic impact velocity was adjusted by varying the air chamber pressure from 2 to 6 bar, which facilitated the self-healing of Stone-Wall defects in rGO sheets. Supersonic spraying caused exfoliation of the rGO sheets, which in turn increased the surface area and adherence of the Fe(2)O(3 nbsp;)nanoparticles. The optimal case exhibited a specific capacitance of 1.44 F.cm(-2) at a current rate of 1.5 mA.cm(-2) and the energy density was 14.23 mW.cm(-3) at 250 mW.cm(-3). The width of the potential window increased to 1.4 V, implying a significant increase in the energy storage capability. The energy density of the supersonically sprayed Fe2O3/rGO electrode also showed no signs of deterioration even when the increased current density interfered with the electrode performance.
机译:将氧化铁(Fe2O3)纳米颗粒和还原氧化石墨烯(rGO)片超音速喷涂到镍衬底上,以制造柔性超级电容器。通过将气室压力从2 bar改变到6 bar来调节超音速冲击速度,这有利于rGO板材中石壁缺陷的自愈。超音速喷涂导致rGO片材脱落,进而增加了Fe(2)O(3 )的表面积和粘附性纳米颗粒。在1.5 mA.cm(-2)电流速率下,最佳情况下的比电容为1.44 F.cm(-2),在250 mW.cm(-3)时能量密度为14.23 mW.cm(-3)。电位窗口的宽度增加到1.4 V,这意味着储能能力显著提高。超音速喷涂的Fe2O3/rGO电极的能量密度在电流密度增加干扰电极性能的情况下也没有出现劣化迹象。

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