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Hierarchy in Au Nanocrystal Ordering in Supracrystals: III. Competition between van der Waals and Dynamic Processes

机译:超晶中金纳米晶有序结构:III。范德华与动态过程之间的竞争

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Au nanocrystals coated with thiol derivatives of varying chain sizes ranging from C_(12) to C_(16) were produced; two different size nanocrystals have been synthesized (5 and 7 nm in diameter) for each coating agent. All of those specimens are characterized by a low size distribution (below 7%). Those Au nanocrystals were used as building blocks to grow larger self-assembled crystalline structures or supracrystals. These crystalline growths were carried out by slow and controlled solvent evaporation at different temperatures and under nonnull partial solvent vapor pressure (P_t). We show that the order within the supracrystals is temperature-dependent when they are made of hexadecanethiol-coated gold nanocrystals, regardless of the size of the nanocrystals. The interparticle distances within the various supracrystals that were produced were determined by small-angle X-ray diffraction (SAXRD). We demonstrate that the interparticle distance is controlled not only by the presence of physisorbed thiol residues, as previously reported, but also, at higher temperatures, by the dynamics of the organic chains and the van der Waals forces involved between the metallic cores of the nanocrystals forming the structure.
机译:制备了涂覆有链大小从C_(12)到C_(16)的硫醇衍生物的Au纳米晶体。对于每种涂层剂,已经合成了两种不同尺寸的纳米晶体(直径分别为5和7 nm)。所有这些标本的特点是尺寸分布小(低于7%)。这些金纳米晶体被用作构建更大的自组装晶体结构或超晶体的基础。这些晶体生长是通过在不同温度和非零分溶剂蒸气压(P_t)下缓慢且受控地蒸发溶剂来进行的。我们表明,当它们由十六烷硫醇包覆的金纳米晶体制成时,超晶体内的顺序与温度有关,而与纳米晶体的大小无关。通过小角X射线衍射(SAXRD)确定所产生的各种超晶体内的粒子间距离。我们证明,粒子间的距离不仅受先前报道的物理吸附的硫醇残基的存在控制,而且在较高的温度下,还受有机链的动力学和纳米晶体的金属核之间涉及的范德华力的控制形成结构。

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