首页> 外文期刊>Nano letters >A New Type of Porous Graphite Foams and Their Integrated Composites with Oxide/Polymer Core/Shell Nanowires for Supercapacitors: Structural Design, Fabrication, and Full Supercapacitor Demonstrations
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A New Type of Porous Graphite Foams and Their Integrated Composites with Oxide/Polymer Core/Shell Nanowires for Supercapacitors: Structural Design, Fabrication, and Full Supercapacitor Demonstrations

机译:新型超级电容器用多孔石墨泡沫及其与氧化物/聚合物核/壳纳米线的集成复合材料:结构设计,制造和完整超级电容器演示

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摘要

We attempt to meet the general design requirements for high-performance supercapacitor electrodes by combining the strategies of lightweight substrate, porous nanostructure design, and conductivity modification. We fabricate a new type of 3D porous and thin graphite foams (GF) and use as the light and conductive substrates for the growth of metal oxide core/shell nanowire arrays to form integrated electrodes. The nanowire core is Co_3O_4, and the shell is a composite of conducting polymer (poly(3,4-ethylenedioxythiophene), PEDOT) and metal oxide (MnO_2). To show the advantage of this integrated electrode design (viz., GF + Co_3O_4/ PEDOT?MnO_2 core/shell nanowire arrays), three other different less-integrated electrodes are also prepared for comparison. Full supercapacitor devices based on the GF + Co_3O_4/PEDOT?MnO_2 as positive electrodes exhibit the best performance compared to other three counterparts due to an optimal design of structure and a synergistic effect.
机译:我们尝试通过结合轻型基板,多孔纳米结构设计和电导率调节策略来满足高性能超级电容器电极的一般设计要求。我们制造了一种新型的3D多孔和薄石墨泡沫(GF),并用作光和导电基底,用于生长金属氧化物核/壳纳米线阵列以形成集成电极。纳米线芯为Co_3O_4,壳为导电聚合物(聚(3,4-乙撑二氧噻吩),PEDOT)和金属氧化物(MnO_2)的复合材料。为了展示这种集成电极设计的优势(即GF + Co_3O_4 / PEDOT?MnO_2核/壳纳米线阵列),还准备了其他三种不同的集成度较低的电极进行比较。与其他三个同类产品相比,基于GF + Co_3O_4 / PEDOT?MnO_2作为正极的完整超级电容器器件具有最佳的结构设计和协同作用,因此表现出最佳的性能。

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