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首页> 外文期刊>Nature Communications >Nanoelectrode design from microminiaturized honeycomb monolith with ultrathin and stiff nanoscaffold for high-energy micro-supercapacitors
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Nanoelectrode design from microminiaturized honeycomb monolith with ultrathin and stiff nanoscaffold for high-energy micro-supercapacitors

机译:纳米电极设计从微型蜂窝蜂窝单片,具有超薄和硬纳米支气管的高能量微型超级超级电容器

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摘要

Downsizing the cell size of honeycomb monoliths to nanoscale would offer high freedom of nanostructure design beyond their capability for broad applications in different fields. However, the microminiaturization of honeycomb monoliths remains a challenge. Here, we report the fabrication of microminiaturized honeycomb monoliths-honeycomb alumina nanoscaffold-and thus as a robust nanostructuring platform to assemble active materials for micro-supercapacitors. The representative honeycomb alumina nanoscaffold with hexagonal cell arrangement and 400?nm inter-cell spacing has an ultrathin but stiff nanoscaffold with only 16?±?2?nm cell-wall-thickness, resulting in a cell density of 4.65?×?10sup9/sup cells per square inch, a surface area enhancement factor of 240, and a relative density of 0.0784. These features allow nanoelectrodes based on honeycomb alumina nanoscaffold synergizing both effective ion migration and ample electroactive surface area within limited footprint. A micro-supercapacitor is finally constructed and exhibits record high performance, suggesting the feasibility of the current design for energy storage devices.
机译:将蜂窝线的细胞尺寸缩小到纳米载体将提供高自由的纳米结构设计,超出其在不同领域的广泛应用的能力。然而,蜂窝唯一的微米化仍然是一个挑战。在此,我们报告了微纯蜂窝整体溶质 - 蜂窝氧化铝纳米烃纳米烃的制备 - 因此作为鲁棒的纳米结构平台,以组装用于微型超级电容器的活性材料。具有六边形细胞布置的代表性蜂窝氧化铝纳米烃型纳米烃间距具有超薄但仅具有16Ω·β2Ω·壁壁 - 厚度的超薄但纳米支腿,导致细胞密度为4.65?×10 < Sup> 9 每平方英寸的细胞,表面积增强因子为240,相对密度为0.0784。这些特征允许基于蜂窝氧化铝纳米烃的纳米电极在有限占地面积内协同有效离子迁移和充足的电活性表面积。终于构建了微型超级电容器并表现出记录高性能,表明电流设计的能量存储装置的可行性。

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