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Sponge-like nanoporous single crystals of gold

机译:海绵状金纳米多孔单晶

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Single crystals in nature often demonstrate fascinating intricate porous morphologies rather than classical faceted surfaces. We attempt to grow such crystals, drawing inspiration from biogenic porous single crystals. Here we show that nanoporous single crystals of gold can be grown with no need for any elaborate fabrication steps. These crystals are found to grow following solidification of a eutectic composition melt that forms as a result of the dewetting of nanometric thin films. We also present a kinetic model that shows how this nano-porous single-crystalline structure can be obtained, and which allows the potential size of the porous single crystal to be predicted. Retaining their single-crystalline nature is due to the fact that the full crystallization process is faster than the average period between two subsequent nucleation events. Our findings clearly demonstrate that it is possible to form single-crystalline nano porous metal crystals in a controlled manner.
机译:自然界中的单晶通常表现出令人着迷的复杂多孔形态,而不是经典的刻面表面。我们尝试从生物多孔单晶中汲取灵感来生长这种晶体。在这里,我们表明,无需任何复杂的制造步骤即可生长金的纳米多孔单晶。发现这些晶体在共晶组合物熔体固化后生长,该共熔体熔体是由于纳米薄膜的去湿而形成的。我们还提出了一个动力学模型,该动力学模型显示了如何获得这种纳米多孔单晶结构,并可以预测多孔单晶的潜在尺寸。保留其单晶性质是由于以下事实:完整的结晶过程比两个后续成核事件之间的平均周期快。我们的发现清楚地表明,可以以受控的方式形成单晶纳米多孔金属晶体。

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