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Shape-controlled synthesis of porous carbons for flexible asymmetric supercapacitors

机译:Shape-controlled合成的多孔碳灵活的非对称超级电容器

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N-Doped carbon nanomaterials have gained tremendous research interest in energy storage because of their high capacitance and chemical stability. Here, N-doped porous carbons (NPCs) with multiple shape-controlled and tunable morphologies are developed through a direct one-step pyrolysis/activation method. Typically, NPC-700-1, which is 5 nm thick and 6 m wide, shows a high surface area (1591.5 m(2) g(-1)) and hierarchical micro-, meso-, and macroporous architecture. The maximum specific capacitance of the as-prepared carbon nanosheets is 406 F g(-1) at 1 A g(-1) in KOH electrolyte. Moreover, flexible all-solid-state asymmetric supercapacitor devices assembled from NPCs and NiCo2O4 deliver a superior energy density of 42.7 W h kg(-1) at 794.6 W kg(-1), and good cycling ability (94 after 10000 cycles). All the results suggest that NPCs have great potential for high performance wearable electronics and energy storage devices.
机译:n型碳纳米材料能量储存巨大的研究兴趣因为他们的高电容和化学稳定。与多个shape-controlled和可调形态是通过直接开发的一步热解/激活方法。人大- 700 - 1,即5 nm厚6米宽,显示了一个高表面积(1591.5米(2)g (1))分层微、中间和大孔体系结构。和碳nanosheets 406 F g (1)在KOH 1 g(1)电解液。灵活的全固态不对称超级电容器设备从npc和组装NiCo2O4提供优越的能量密度为42.7W W h公斤(1)为794.6千克(1),和良好的循环10000个周期后的能力(94%)。建议npc高潜力巨大性能可穿戴电子和能量存储设备。

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