Wood Jared A, Liu Yawei, Widmer-Cooper Asaph
ARC Centre of Excellence in Exciton Science, School of Chemistry, University of Sydney, Sydney, New South Wales 2006, Australia.
J Chem Phys. 2021 Jun 28;154(24):244505. doi: 10.1063/5.0052623.
In order to better control the assembly of nanorods, knowledge of the pathways by which they form ordered structures is desirable. In this paper, we characterize crystal nucleation in suspensions of spherocylindrical rods with aspect ratio L/D = 2.3 in the presence of both small and large polymer depletants. Using a combination of Langevin dynamics and Monte Carlo simulations, together with biased sampling techniques, we show that the preferred pathway always involves the formation of monolayer assemblies irrespective of the volume fraction of the initial isotropic phase and the diameter of the depletants. This includes the previously neglected case of nucleation from the colloidal liquid phase and shows that the presence of depletion attraction can alter nucleation pathways even when the initial phase is dense.
为了更好地控制纳米棒的组装,了解它们形成有序结构的途径是很有必要的。在本文中,我们表征了在存在小分子和大分子聚合物贫化剂的情况下,长径比L/D = 2.3的球柱状棒状悬浮液中的晶体成核过程。通过结合朗之万动力学和蒙特卡罗模拟,以及有偏采样技术,我们表明,无论初始各向同性相的体积分数和贫化剂的直径如何,优先途径总是涉及单层组装的形成。这包括以前被忽视的从胶体液相成核的情况,并表明即使初始相是致密的,耗尽吸引的存在也会改变成核途径。