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Pattern-selective epitaxial growth of twin-free Pd nanowires from supported nanocrystal seeds

机译:从负载的纳米晶种子中无孪晶的Pd纳米线的图案选择性外延生长

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We report that twin-free single-crystalline Pd nanowire (NW) arrays grow epitaxially in a selected pattern on a substrate. Parallel aligned Pd NWs are synthesized on a SrTiO_3 (110) substrate in a very high density. On a SrTiO_3 (001) substrate, Pd NWs grow horizontally in two perpendicular directions. Vertical Pd NWs are synthesized instead of horizontal NWs when a c-cut sapphire substrate is employed. We reveal that the atomic structure of the substrate surface determines the geometry and orientation of seeds, which in turn direct the growth patterns of the NWs. The interface energy between the NW material and the substrate is also critical in determining the NW growth pattern. Polarization-dependent localized surface plasmon resonance of as-synthesized epitaxial Pd NW arrays is investigated for application as a plasmonic platform.
机译:我们报告说,无孪晶的单晶Pd纳米线(NW)阵列在基板上以选定的模式外延生长。在SrTiO_3(110)衬底上以非常高的密度合成了平行排列的Pd NW。在SrTiO_3(001)衬底上,Pd NW在两个垂直方向上水平生长。当使用C形切割蓝宝石衬底时,将合成垂直Pd NW而不是水平NW。我们揭示了衬底表面的原子结构决定了种子的几何形状和方向,而种子的几何形状和方向又决定了纳米线的生长方式。 NW材料和衬底之间的界面能在确定NW生长模式中也很关键。合成的外延Pd NW阵列的极化依赖的局部表面等离子体共振被研究用作等离子体平台。

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