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Application of the paracrystal model to GISAXS analysis of the 3D self-assembled nanoparticle crystals

机译:准晶体模型在GISAXS分析3D自组装纳米颗粒晶体中的应用

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摘要

An original diffraction model for the evaluation of the grazingincidence small-angle X-ray scattering (GISAXS) of the threedimensional (3D) supported self-assembled nanoparticle crystals is presented. The model utilizes the formalism of traditional crystallography that is applied to nanoparticles as scattering entities. The infinite paracrystal concept was adopted in order to include cumulative disorder that is typical for the self-assembled nanoparticle structures. Azimuthal averaging around a chosen crystallographic direction allows incorporation of texture effects. A transformation of the SAXS paracrystal equations to comply with the GISAXS geometry was employed to describe the scattering process in the limit of the kinematical approximation which facilitates calculations. The model was developed for the face-centered cubic (FCC) symmetry, however, its extension to any other cubic symmetry is straightforward. The model was tested on a 3D nanoparticle assembly formed on silicon from a dried drop-cast colloidal solution of monodisperse silver nanoparticles of 5.8±0.6 nm diameter. Presence of the FCC nanoparticle crystal with the [111] texture along the substrate normal was evidenced from evaluation of the synchrotron GISAXS data. The degree of paracrystal disorder is 2.5% and 3.6% parallel and perpendicular to the substrate, respectively, suggesting the anisotropic character of the self-assembling process. A SAXS measurement of the nanoparticle crystal formed from the same solution in a capillary revealed a randomly oriented FCC structure with a slightly larger paracrystal disorder of 4%. Obviously, different conditions of the nanoparticle crystal formation affect its azimuthal and translational disorder.
机译:提出了一种原始的衍射模型,用于评估三维(3D)支撑的自组装纳米颗粒晶体的掠入射小角X射线散射(GISAXS)。该模型利用了传统晶体学的形式主义,将其应用于纳米粒子作为散射实体。为了包括自组装纳米颗粒结构典型的累积无序,采用了无限的准晶体概念。围绕选定晶体学方向的方位平均可以合并纹理效果。遵循GISAXS几何形状的SAXS准晶体方程的变换被用来描述在运动学近似极限内的散射过程,这有助于计算。该模型是针对面心立方(FCC)对称性开发的,但是,将其扩展到任何其他立方对称性都很简单。在由直径为5.8±0.6 nm的单分散银纳米颗粒的干燥滴铸胶体溶液在硅上形成的3D纳米颗粒组件上测试了模型。通过对同步加速器GISAXS数据的评估,可以证明沿着基材法线存在[111]织构的FCC纳米粒子晶体。平行晶体和垂直于衬底的准晶体无序度分别为2.5%和3.6%,表明自组装过程的各向异性特征。由毛细管中相同溶液形成的纳米粒子晶体的SAXS测量显示,随机取向的FCC结构的副晶体无序性稍大,为4%。显然,纳米粒子晶体形成的不同条件会影响其方位角和平移无序。

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