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Ultrathin Gold Nanowires with the Polytetrahedral Structure of Bulk Manganese

机译:超薄金纳米线与散装锰的多粒状结构

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Despite the intensive interest in thin gold nanowires for a variety of technologically important applications, key details of the mechanism of their formation and atomic-scale structure remain unknown. Here we synthesize highly uniform, very long, and ultrathin gold nanowires in a liquid-phase environment and study their nucleation and growth using in situ high-energy synchrotron X-ray diffraction. By controlling the type of solvents, reducing agents, and gold precursor concentration, it is shown that the nucleation and growth of gold nanowires involve the emergence and self-assembly of transient linear gold complexes, respectively. In sharp contrast with the face-centeredcubic bulk gold, the evolved nanowires are found to possess a tetrahedrally close packed structure incorporating distorted icosahedra and larger size coordination polyhedra of the type observed with the room-temperature phase of bulk manganese. We relate the complexes to synergistic effects between the selected precursor and reducing agents that become appreciable over a narrow range of their molar ratios. We attribute the unusual structural state of gold nanowires to geometrical frustration effects arising from the conflicting tendencies of assemblies of metal atoms to evolve toward attaining high atomic packing density while keeping the atomic-level stresses low, ultimately favoring the growth of cylindrical nanowires with a well-defined diameter and atomically smooth surface. Our work provides a roadmap for comprehensive characterization and, hence, better understanding of 1D metallic nanostructures with an unusual atomic arrangement and may have important implications for their synthesis and performance in practical applications.
机译:尽管对各种技术重要应用的薄金纳米线密集兴趣,但其形成机制和原子尺度结构的关键细节仍然未知。在这里,我们在液相环境中合成高度均匀,非常长的和超薄金纳米线,并使用原位高能量同步同步X射线衍射研究其成核和生长。通过控制溶剂的类型,还原剂和金前体浓度,示出了金纳米线的成核和生长涉及瞬时线性金色配合物的出现和自组装。在与面中心的散装金形成鲜明对比中,发现进化的纳米线具有四面体关闭填充结构,该结构包含扭曲的Icosahedra和较大尺寸的配位Polyhedra与散装锰的室温阶段观察到的类型。我们将复合物与所选前体和还原剂之间的协同作用联系起来,这在其摩尔比的窄范围内变得明显。我们将金纳米线的不寻常的结构状态归因于由金属原子的组件冲突趋势产生的几何挫折效应,以发展到高原子填料密度,同时保持原子水平的应力低,最终有利于圆柱形纳米线的生长 - 直径和原子平滑表面。我们的工作提供了一种用于综合表征的路线图,从而更好地了解具有异常原子排列的1D金属纳米结构,并且可能对其在实际应用中的合成和性能具有重要意义。

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