论文标题

通过对称函数建模配体涂层纳米颗粒之间的有效相互作用

Modeling of effective interactions between ligand coated nanoparticles through symmetry functions

论文作者

Chintha, Dinesh, Veesam, Shivanand Kumar, Boattini, Emanuele, Filion, Laura, Punnathanam, Sudeep N

论文摘要

配体涂层的纳米颗粒是由金属或半导体核组成的复杂物体,其表面上移植了有机配体。这些有机配体提供了纳米颗粒悬浮液的稳定性。在溶液中,这种纳米颗粒之间的有效相互作用是通过纳米颗粒核,周围配体和溶剂分子之间相互作用的复杂相互作用来介导的。尽管可以使用完全原子的分子模拟来计算这些相互作用,但对于研究大量纳米颗粒的自组装而言,此类计算太昂贵了。可以通过去除与配体链和溶剂分子相关的自由度以及使用纳米颗粒之间的平均力(PMF)电势来解决问题。通常,PMF对颗粒间距离的功能依赖性未知,并且可能非常复杂。在本文中,我们提出了一种通过对称函数的线性组合在配体涂层纳米颗粒之间进行平均力的两体和三体力势的方法。该方法非常笼统,可以扩展到不同类型的大分子之间的模型相互作用。

Ligand coated nanoparticles are complex objects consisting of a metallic or semiconductor core with organic ligands grafted on their surface. These organic ligands provide stability to a nanoparticle suspension. In solutions, the effective interactions between such nanoparticles are mediated through a complex interplay of interactions between the nanoparticle cores, the surrounding ligands and the solvent molecules. While it is possible to compute these interactions using fully atomistic molecular simulations, such computations are too expensive for studying self-assembly of a large number of nanoparticles. The problem can be made tractable by removing the degrees of freedom associated with the ligand chains and solvent molecules and using the potentials of mean force (PMF) between nanoparticles. In general, the functional dependence of the PMFs on the inter-particle distance is unknown and can be quite complex. In this article, we present a method to model the two-body and three-body potentials of mean force between ligand coated nanoparticles through a linear combination of symmetry functions. The method is quite general and can be extended to model interactions between different types of macromolecules.

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