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首页> 外文期刊>Journal of Applied Crystallography >Periodic lattices of arbitrary nano-objects: modeling and applications for self-assembled systems
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Periodic lattices of arbitrary nano-objects: modeling and applications for self-assembled systems

机译:任意纳米物体的周期性晶格:自组装系统的建模和应用

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摘要

A formalism is described which enables the simulation or fitting of small-angle scattering data (X-ray or neutron) for periodic heterogeneous lattices of arbitrary nano-objects. Generality is maximized by allowing for particle mixtures, anisotropic nano-objects and definable orientations of nano-objects within the unit cell. The model is elaborated by including a variety of kinds of disorder relevant to self-assembling systems: finite grain size, polydispersity in particle properties, positional and orientation disorder of particles, and substitutional or vacancy defects within the lattice. The applicability of the approach is demonstrated by fitting experimental X-ray scattering data. In particular, the article provides examples of superlattices self-assembled from isotropic and anisotropic nanoparticles which interact through complementary DNA coronas.
机译:描述了形式主义,该形式主义使得能够对任意纳米物体的周期性异质晶格进行小角度散射数据(X射线或中子)的模拟或拟合。通过允许在晶胞内混合颗粒,各向异性的纳米物体和纳米物体的可定义方向,可以最大限度地提高通用性。通过包括与自组装系统有关的多种无序性来完善该模型:有限的粒度,粒子特性的多分散性,粒子的位置和取向无序性以及晶格内的置换或空位缺陷。通过拟合实验X射线散射数据证明了该方法的适用性。特别是,本文提供了由各向同性和各向异性的纳米粒子自组装的超晶格的示例,这些纳米晶通过互补的DNA电晕相互作用。

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