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Structural Order in Ultrathin Films of the Monolayer Protected Clusters Based Upon 4-nm Gold Nanocrystals: An Experimental and Theoretical Study

机译:基于4 nm金纳米晶体的单层保护簇超薄膜的结构顺序:实验和理论研究。

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摘要

The structural order in ultrathin films of monolayer protected clusters (MPCs) is important in a number of application areas but can be difficult to demonstrate by conventional methods, particularly when the metallic core dimension, d, is in the intermediate size-range, 1.5 < d < 5.0 nm. Here, improved techniques for the synthesis of monodisperse thiolate-protected gold nanoparticles have made possible the production of dodecane-thiolate saturated ~ 4 ± 0.5 nm Au clusters with single-crystal core structure and morphology. An ultrathin ordered film or superlattice of these nanocrystal-core MPCs is prepared and investigated using aberration corrected scanning/transmission electron microscopy (STEM) which allowed imaging of long-range hexagonally ordered superlattices of the nanocrystals, separated by the thiolate groups. The lattice constants determined by direct imaging are in good agreement with those determined by small-angle electron diffraction. The STEM image revealed the characteristic grain boundary (GB) with sigma (Σ) 13 in the interface between two crystals. The formation and structures found are interpreted on the basis of theoretical calculations employing molecular dynamics (MD) simulations and coarse-grained (CG) approach.
机译:单层保护簇(MPC)的超薄膜的结构顺序在许多应用领域中都很重要,但是用常规方法很难证明,特别是当金属芯尺寸d在中等尺寸范围1.5 < d <5.0nm。在这里,用于合成单分散硫醇盐保护的金纳米颗粒的改进技术使得生产具有单晶核结构和形态的十二烷硫醇盐饱和〜4±0.5 nm Au簇成为可能。制备并使用像差校正扫描/透射电子显微镜(STEM)研究了这些纳米晶核MPC的超薄有序膜或超晶格,该像差校正扫描/透射电子显微镜(STEM)可以对纳米晶的长程六角形有序超晶格进行成像,并用硫醇盐基团隔开。通过直接成像确定的晶格常数与通过小角度电子衍射确定的晶格常数高度吻合。 STEM图像显示了两个晶体之间的界面中具有σ(Σ)13的特征晶界(GB)。发现的形成和结构是在使用分子动力学(MD)模拟和粗粒(CG)方法进行理论计算的基础上进行解释的。

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