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Order/Disorder Dynamics in a Dodecanethiol-Capped Gold Nanoparticles Supracrystal by Small-Angle Ultrafast Electron Diffraction

机译:小角超快电子衍射在十二烷硫醇封顶的金纳米粒子超晶中的有序/无序动力学。

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The design and the characterization of functionalized gold nanoparticles supracrystals require atomically resolved information on both the metallic core and the external organic ligand shell. At present, there is no known approach to characterize simultaneously the static local order of the ligands and of the nanoparticles, nor their dynamical evolution. In this work, we apply femtosecond small-angle electron diffraction combined with angular cross-correlation analysis, to retrieve the local arrangement from nanometer to interatomic scales in glassy aggregates. With this technique we study a two-dimensional distribution of functionalized gold nanoparticles deposited on amorphous carbon. We show that the dodecanethiol ligand chains, coating the gold cores, order in a preferential orientation on the nanoparticle surface and throughout the supracrystal. Furthermore, we retrieve the dynamics of the supracrystal upon excitation with light and show that the positional disorder is induced by light pulses, while its overall homogeneity is surprisingly found to transiently increase. This new technique will enable the systematic investigation of the static and dynamical structural properties of nanoassembled materials containing light elements, relevant for several applications including signal processing and biology.
机译:功能化的金纳米粒子超晶的设计和表征要求在金属核和外部有机配体壳上都具有原子分辨的信息。目前,没有已知的方法可以同时表征配体和纳米颗粒的静态局部顺序,也不动态地表征它们的动态演化。在这项工作中,我们将飞秒小角电子衍射与角互相关分析相结合,以检索玻璃态聚集体中从纳米尺度到原子间尺度的局部排列。通过这项技术,我们研究了沉积在无定形碳上的功能化金纳米粒子的二维分布。我们表明,十二烷硫醇配体链,覆盖金核,在纳米粒子表面和整个超晶上以优先取向排列。此外,我们在光激发下检索了超晶体的动力学,并表明位置紊乱是由光脉冲引起的,而令人惊讶地发现其整体均匀性会瞬时增加。这项新技术将使系统研究含光元素的纳米组装材料的静态和动态结构特性,与包括信号处理和生物学在内的多种应用相关。

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