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Hierarchical nested-network nanostructure by dealloying

机译:通过脱合金的分层嵌套网络纳米结构

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摘要

Applications of porous microstructures in functional materials often impose conflicting requirements on the pore size, which may be met by hierarchical structures that combine porosity on distinctly different length scales. Here we report an electrochemical dealloying strategy that yields bulk samples of porous gold with a hierarchical microstructure. A nanoscale network of solid ligaments forms the lower hierarchy level, which is nested within the geometrically similar, but much larger, network of the upper hierarchy level. Starting from a dilute solid solution of Au in Ag, controlled electrochemical corrosion yields nanoporous Ag-Au alloy as an intermediate product. Coarsening of the porous alloy creates the large ligaments of the upper hierarchy level. Those are then again dealloyed, which creates the fine ligaments of the lower hierarchy level. We show that the material exhibits enhanced charge transport kinetics while maintaining a large specific surface area.
机译:多孔微结构在功能材料中的应用通常对孔径提出了相互矛盾的要求,这可以通过在明显不同的长度尺度上组合孔隙度的分层结构来满足。在这里,我们报告了一种电化学脱合金策略,该策略产生了具有分层微观结构的多孔金的大量样品。固态韧带的纳米级网络形成较低的层次级别,该层次嵌套在几何相似但较大的较高层次的网络内。从Au在Ag中的稀固溶体开始,受控的电化学腐蚀会产生纳米多孔Ag-Au合金作为中间产物。多孔合金的粗化会产生较高层次的韧带。然后再次将其解雇,从而创建较低等级的细韧带。我们表明,该材料展示出增强的电荷传输动力学,同时保持较大的比表面积。

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