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Interconnected three-dimensionally hierarchical heterostructures with homogeneously-dispersed V2O5 nanocrystals and carbon for high performance supercapacitor electrodes

机译:用均匀分散的V2O5纳米晶体和碳对三维分层异质结构和用于高性能超级电容器电极的碳

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摘要

In this article, a simple "liquid phase impregnation template" strategy has been developed to synthesize hierarchically porous V2O5/C (HPVC) nanocomposites by using commercial V2O5 and phenol formaldehyde (PF) resol as precursors and polystyrene opal microspheres as template. The amount of vanadium sol in the vanadium-PF precursor has a significant effect on the morphology and microstructure of the resulting HPVC nanocomposites. Due to the intact interconnected hierarchical network framework and the homogeneous dispersion of constitutive V2O5 nanocrystals and carbon phases, the optimal sample HPVC2 with higher surface area (645 m(2) g(-1)) and mesopore surface area (394 m(2) g(-1),)and an appropriate content of V2O5 (38.7 wt.%), is found to be the most efficient one as supercapacitor electrode with a high specific capacitance up to 492.1F g(-1) at a scan rate of 5 mV s(-1) in the three-electrode system. When used as symmetric electrode, the HPVC2//HPVC2 supercapacitor exhibits a high energy density up to 87.6 Wh kg(-1) at a power density of 497 W kg(-1), which greatly surpasses those of pure single-component counterparts and others reported V2O5/C composites. The present work conceptually provides a facile way for integrating transition metal oxide with carbon in hierarchically porous nanostructure to synthesize hybrid electrode materials for advanced energy storage/conversion devices. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,已经开发了一种简单的“液相浸渍模板”策略,以通过使用商业V2O5和酚醛醛(PF)ICT作为前体和聚苯乙烯蛋白质微球作为模板来合成分层多孔V2O5 / C(HPVC)纳米复合材料。钒-PF前体中的钒溶胶量对所得HPVC纳米复合材料的形态和微观结构具有显着影响。由于完整的互联的层次网络框架和组成型V2O5纳米晶体和碳相的均匀分散,具有较高表面积的最佳样品HPVC2(645μm(2)G(-1))和中孔表面积(394m(2) G(1),)和V2O5(38.7wt.%)的适当含量,被发现是最有效的,作为高达492.1f g(-1)的超级电容,扫描速率三电极系统中的5 MV S(-1)。当用作对称电极时,HPVC2 // HPVC2超级电容器在497W kg(-1)的功率密度下表现出高达87.6WHKG(-1)的高能量密度,这极大地超过了纯单组分对应物的高度突出其他人报告了V2O5 / C复合材料。本工作概念性地提供了一种用于将过渡金属氧化物与分层多孔纳米结构中的碳的含量集成,以合成用于先进的能量存储/转换装置的混合电极材料。 (c)2017 Elsevier Ltd.保留所有权利。

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