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聚合物连接的纳米颗粒在纳米管中形成具有均匀表面和Janus表面的自组装体。

Self-assembly of polymer-tethered nanoparticles with uniform and Janus surfaces in nanotubes.

作者信息

Sato Takumi, Kobayashi Yusei, Michioka Takenobu, Arai Noriyoshi

机构信息

Department of Mechanical Engineering, Keio University, Kohoku-ku, Yokohama, Japan.

Department of Mechanical Engineering, Kindai University, Higashi-Osaka, Osaka, Japan.

出版信息

Soft Matter. 2021 Apr 21;17(15):4047-4058. doi: 10.1039/d1sm00009h.

Abstract

In this study, a coarse-grained molecular simulation was performed to investigate the morphologies and phase diagrams of self-assembled polymer-tethered nanoparticles (NPs) confined in nanotubes (NTs). Unlike ordinary NPs, polymer-tethered NPs have two distinct characteristic lengths, which are key factors that determine their self-assembly. Herein, two distinct types of NT walls and three types of polymer-tethered NPs were considered: hydrophilic and hydrophobic walls, and hydrophilic, hydrophobic, and Janus surfaces. First, the qualitative phase diagrams of the axial pressure, Pz, versus the ratio of the NT radius to the NP radius, L, were derived. The results revealed that diverse self-assembled morphologies, which are not formed in non-tethered NPs, were observed in the polymer-tethered NPs. For example, three types of ordered structures with different structural characteristic lengths, depending on Pz, were obtained. In addition, the effect of the chemical nature of the polymer-tethered NP surface on the self-assembled morphology confined in NTs was investigated. Clusters of water molecules were formed, particularly in the hydrophobic polymer-tethered NPs, and these clusters caused the structural distortion of the NP. Moreover, in the polymer-tethered NPs with the Janus amphiphilic surface, the hydrophobic and hydrophilic polymer tethered NPs assembled in the axial direction to form an ordered structure, and a double-helix structure was formed at L = 3.0 in the hydrophobic NT. The results of these simulations indicate that the self-assembly behaviours of polymer-tethered NPs can be qualitatively predicted based on the chemical nature of the NT walls and the surface design of the polymer-tethered NP.

摘要

在本研究中,进行了粗粒度分子模拟,以研究限制在纳米管(NTs)中的自组装聚合物连接纳米颗粒(NPs)的形态和相图。与普通NPs不同,聚合物连接的NPs有两个不同的特征长度,这是决定其自组装的关键因素。在此,考虑了两种不同类型的NT壁和三种类型的聚合物连接NPs:亲水壁和疏水壁,以及亲水、疏水和Janus表面。首先,得出了轴向压力Pz与NT半径与NP半径之比L的定性相图。结果表明,在聚合物连接的NPs中观察到了在非连接NPs中未形成的多种自组装形态。例如,根据Pz获得了三种具有不同结构特征长度的有序结构。此外,还研究了聚合物连接NP表面的化学性质对限制在NTs中的自组装形态的影响。形成了水分子簇,特别是在疏水聚合物连接的NPs中,这些簇导致了NP的结构畸变。此外,在具有Janus两亲表面的聚合物连接的NPs中,疏水和亲水聚合物连接的NPs在轴向上组装形成有序结构,并且在疏水NTs中L = 3.0时形成了双螺旋结构。这些模拟结果表明,可以根据NT壁的化学性质和聚合物连接NP的表面设计对聚合物连接NPs的自组装行为进行定性预测。

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