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首页> 外文期刊>Chemical engineering journal >Ultrathin mesoporous NiMoO4-modified MoO3 core/shell nanostructures: Enhanced capacitive storage and cycling performance for supercapacitors
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Ultrathin mesoporous NiMoO4-modified MoO3 core/shell nanostructures: Enhanced capacitive storage and cycling performance for supercapacitors

机译:超薄介孔NIMOO4改装的MOO3芯/壳纳米结构:超级电容器的增强电容存储和循环性能

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摘要

Orthorhombic molybdenum trioxide (alpha-MoO3) as an electrode material for electrochemical energy storage has attracted much attention due to its unique intercalation pseudocapacitive property. However, subjected to its low conductivity and intrinsic redox reaction, supercapacitors with alpha-MoO3 electrodes usually suffer from specific capacitance far below the theoretical value and poor cycling life. In this work, NiMoO4-modified alpha-MoO3 nanobelts are synthesized through a facile two-step hydrothermal method. The MoO3 nanobelts are fully covered by an ultrathin mesoporous NiMoO4 layer (10-20 nm), i.e. MoO3/NiMoO4 core/shell nanobelts. Benefiting from the high electrochemical activity of NiMoO4, the surface recombination effect between NiMoO4 and MoO3, the porous structure and abundant active sites in the NiMoO4 shell acting as "ion-buffering reservoirs", the MoO3/NiMoO4 electrodes exhibit a high specific capacitance of 1307 F g(-1) (nearly six times that of the pristine alpha-MoO3 electrode), good rate capability and excellent cycling performance in 3M KOH electrolyte. In addition, asymmetric supercapacitors are assembled with MoO3/NiMoO4 as positive electrodes and plant spore-derived activated carbon microspheres as negative electrodes. A maximum specific capacitance of 184 F g(-1) and an energy density of 37.5 Wh Kg(-1) are demonstrated within a cell voltage between 0 and 1.7 V; the device shows a remarkable cycling capability with 100% retention after 75,000 cycles.
机译:直晶的二氧化钼(Alpha-Moo3)作为电化学能量储存的电极材料由于其独特的嵌入嵌入假性特性而引起了很多关注。然而,经受其低导电性和固有氧化还原反应,具有α-Moo3电极的超级电容器通常遭受远低于理论值和循环寿命不良的特定电容。在这项工作中,通过容易的两步水热法合成了Nimoo4改性的α-Moo3纳米核。 MOO3纳米胶质由超薄介孔NiMoo4层(10-20nm)完全覆盖,即Moo3 / Nimoo4核/壳纳米核。受益于NiMoo4的高电化学活性,NIMOO4和MOO3之间的表面复合效果,NIMOO4壳中的多孔结构和丰富的活性位点作用为“离子缓冲储存器”,MOO3 / NIMOO4电极表现出1307的高比电容F G(-1)(近六倍的原始alpha-moo3电极),在3m Koh电解质中具有良好的速率能力和优异的循环性能。此外,不对称超级电容器用Moo3 / Nimoo4组装为正电极,植物孢子衍生的活性炭微球作为负电极。在0到1.7V之间的电池电压范围内对184f g(-1)的最大特定电容和37.5WH kg(-1)的能量密度;该器件显示出显着的循环能力,在75,000个循环后100%保持。

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