高等学校化学学报 ›› 2016, Vol. 37 ›› Issue (6): 1115.doi: 10.7503/cjcu20160086

• 物理化学 • 上一篇    下一篇

配体链包覆纳米粒子的表面相分离及自组装的模拟研究

徐凡华1,2, 衡晓1, 任建学1, 周恒为1()   

  1. 1. 伊犁师范学院物理科学与技术学院, 新疆凝聚态相变与微结构实验室, 伊宁 835000
    2. 新疆应用职业技术学院机电工程系, 奎屯 833200
  • 收稿日期:2016-02-02 出版日期:2016-06-10 发布日期:2016-05-26
  • 作者简介:联系人简介: 周恒为, 女, 博士, 教授, 主要从事凝聚态物理相关领域的研究. E-mail:zhw33221@163.com
  • 基金资助:
    新疆维吾尔自治区科技创新团队培养建设项目(批准号: 2014751001)资助

Simulation Study of the Phase Separation and Self-assembly of Nanoparticles Coated with Ligands

XU Fanhua1,2, HENG Xiao1, REN Jianxue1, ZHOU Hengwei1,*()   

  1. 1. Xinjiang Laboratory of Phase Transitions and Microstructures in Condensed Matter Physics,College of Physical Science and Technology, Yili Normal University, Yining 835000, China
    2. Department of Mechanical and Electrical Engineering, Xinjiang Career Technical College, Kuitun 833200, China
  • Received:2016-02-02 Online:2016-06-10 Published:2016-05-26
  • Contact: ZHOU Hengwei E-mail:zhw33221@163.com

摘要:

通过耗散粒子动力学方法, 模拟了二元配体链包覆的纳米粒子表面的相分离行为, 并与现有的模拟和实验体系进行对比. 研究结果印证了相分离驱动力是配体链错位所导致的构象熵的结论. 进一步以相分离得到的Janus和三嵌段Janus结构纳米粒子作为构筑单元, 研究了其在选择性溶剂中的自组装行为. 结果表明, Janus粒子易自组装成为双层囊泡结构, 而三嵌段Janus粒子则更易形成单层囊泡结构. 对于从配体链包覆的纳米粒子出发, 设计具有特殊功能的囊泡提供了理论支持.

关键词: 纳米粒子, 相分离, 自组装, 耗散粒子动力学, 囊泡

Abstract:

A simulation study was focused on the phase separation of binary ligands coated on the nanoparticle via the dissipative particle dynamics. After comparing with available simulation and experimental works in literatures, the results support the viewpoint that the driving force comes from the conformational entropy arisen due to a mismatch of ligand chains. A further investigation is conducted on the self-assembly of Janus or triblock Janus nanoparticles in selective solvents. The simulations show that the Janus particles tend to assemble into double-layered vesicle structure, while the triblock Janus particles can form single-layered vesicle structure. This study supplies the theoretical guideline for the design of functional vesicle material via the polymer coated nanoparticles.

Key words: Nanoparticles, Phase separation, Self-assembly, Dissipative particle dynamics, Vesicle

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