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溶液中混合刷状纳米粒子的刷结构的涨落效应。

Fluctuation Effects on the Brush Structure of Mixed Brush Nanoparticles in Solution.

机构信息

Center for Integrated Nanotechnologies, Sandia National Laboratories , Albuquerque, New Mexico 87185, United States.

出版信息

ACS Nano. 2018 Feb 27;12(2):1664-1672. doi: 10.1021/acsnano.7b08271. Epub 2018 Jan 25.

DOI:10.1021/acsnano.7b08271
PMID:29346734
Abstract

A potentially attractive way to control nanoparticle assembly is to graft one or more polymers on the nanoparticle, to control the nanoparticle-nanoparticle interactions. When two immiscible polymers are grafted on the nanoparticle, they can microphase separate to form domains at the nanoparticle surface. Here, we computationally investigate the phase behavior of such binary mixed brush nanoparticles in solution, across a large and experimentally relevant parameter space. Specifically, we calculate the mean-field phase diagram, assuming uniform grafting of the two polymers, as a function of the nanoparticle size relative to the length of the grafted chains, the grafting density, the enthalpic repulsion between the grafted chains, and the solvent quality. We find a variety of phases including a Janus phase and phases with varying numbers of striped domains. Using a nonuniform, random distribution of grafting sites on the nanoparticle instead of the uniform distribution leads to the development of defects in the mixed brush structures. Introducing fluctuations as well leads to increasingly defective structures for the striped phases. However, we find that the simple Janus phase is preserved in all calculations, even with the introduction of nonuniform grafting and fluctuations. We conclude that the formation of the Janus phase is more realistic experimentally than is the formation of defect-free multivalent mixed brush nanoparticles.

摘要

控制纳米粒子组装的一种有吸引力的方法是在纳米粒子上接枝一个或多个聚合物,以控制纳米粒子-纳米粒子相互作用。当两种不混溶的聚合物接枝在纳米粒子上时,它们可以微相分离,在纳米粒子表面形成畴。在这里,我们在计算上研究了这种二元混合刷纳米粒子在溶液中的相行为,跨越了一个大的和实验相关的参数空间。具体来说,我们计算了均场相图,假设两种聚合物的接枝是均匀的,作为纳米粒子尺寸相对于接枝链长度、接枝密度、接枝链之间的焓排斥和溶剂质量的函数。我们发现了多种相,包括 Janus 相和具有不同数量条纹畴的相。在纳米粒子上使用非均匀、随机的接枝位点分布而不是均匀分布会导致混合刷结构中出现缺陷。引入波动也会导致条纹相的结构越来越有缺陷。然而,我们发现即使引入非均匀接枝和波动,简单的 Janus 相也在所有计算中得以保留。我们的结论是,Janus 相的形成在实验上比无缺陷多价混合刷纳米粒子的形成更现实。

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