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Structure of solvent-free grafted nanoparticles: Molecular dynamics and density-functional theory

机译:无溶剂接枝纳米颗粒的结构:分子动力学和密度泛函理论

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摘要

The structure of solvent-free oligomer-grafted nanoparticles has been investigated using molecular dynamics simulations and density-functional theory. At low temperatures and moderate to high oligomer lengths, the qualitative features of the core particle pair probability, structure factor, and the oligomer brush configuration obtained from the simulations can be explained by a density-functional theory that incorporates the configurational entropy of the space-filling oligomers. In particular, the structure factor at small wave numbers attains a value much smaller than the corresponding hard-sphere suspension, the first peak of the pair distribution function is enhanced due to entropic attractions among the particles, and the oligomer brush expands with decreasing particle volume fraction to fill the interstitial space. At higher temperatures, the simulations reveal effects that differ from the theory and are likely caused by steric repulsions of the expanded corona chains. © 2011 American Institute of Physics.
机译:使用分子动力学模拟和密度泛函理论研究了无溶剂低聚物接枝的纳米颗粒的结构。在低温和中等到高的低聚物长度下,可以通过密度泛函理论解释从模拟中获得的核粒子对概率,结构因子和低聚物刷构型的定性特征,该理论结合了空间的构型熵。填充低聚物。特别是,小波数下的结构因子达到的值远小于相应的硬球悬浮体,由于颗粒间的熵吸引,增强了对分布函数的第一个峰,并且低聚物刷随着颗粒体积的减小而膨胀分数填充间隙空间。在更高的温度下,模拟显示的效应与理论不同,并且可能是由膨胀的电晕链的空间排斥引起的。 ©2011美国物理研究所。

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