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In Situ SAXS Measurement and Molecular Dynamics Simulation of Magnetic Alignment of Hexagonal LLC Nanostructures

机译:六角LLC纳米结构的磁性排列的原位SAXS测量和分子动力学模拟

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摘要

The alignment of nanostructures in materials such as lyotropic liquid crystal (LLC) templated materials has the potential to significantly improve their performances. However, accurately characterising and quantifying the alignment of such fine structures remains very challenging. In situ small angle X-ray scattering (SAXS) and molecular dynamics were employed for the first time to understand the hexagonal LLC alignment process with magnetic nanoparticles under a magnetic field. The enhanced alignment has been illustrated from the distribution of azimuthal intensity in the samples exposed to magnetic field. Molecular dynamics simulations reveal the relationship between the imposed force of the magnetic nanoparticles under magnetic field and the force transferred to the LLC cylinders which leads to the LLC alignment. The combinational study with experimental measurement and computational simulation will enable the development and control of nanostructures in novel materials for various applications.
机译:诸如溶致液晶(LLC)模板化材料之类的材料中的纳米结构的对齐具有显着提高其性能的潜力。然而,准确表征和量化这种精细结构的排列仍然非常具有挑战性。首次采用原位小角X射线散射(SAXS)和分子动力学来了解磁场下磁性纳米颗粒的六边形LLC对准过程。从暴露在磁场中的样品中方位角强度的分布可以说明增强的对准性。分子动力学模拟揭示了磁性纳米粒子在磁场下施加的力与传递到LLC圆柱体的力之间的关系,该力导致LLC对准。与实验测量和计算模拟相结合的研究将能够开发和控制用于各种应用的新型材料中的纳米结构。

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