Huang Jianhua, Luo Mengbo, Wang Yongmei
Department of Chemistry, Zhejiang Sci-Tech University, Hangzhou, China.
J Phys Chem B. 2008 Jun 5;112(22):6735-41. doi: 10.1021/jp710567f. Epub 2008 May 10.
Dissipative particle dynamics (DPD) simulations are performed to study the aggregation of hydrophobic nanoparticles in the presence of double-hydrophilic block copolymer (DHBC). A single compact spherical nanoparticle aggregate is formed in the absence of DHBC. The response of the aggregate to a continuous increase in the concentration of DHBC has been investigated in detail. We observe the evolvement from single spherical aggregate, through single ellipsoidal aggregate, single platelike aggregate, single long and curly rod, dispersed aggregates, then to hexagonally packed cylinders, and ultimately to ordered lamellar structures upon slow addition of DHBC chains. However, when nanoparticles and DHBCs are added into the system simultaneously at the beginning of simulation, we only obtain single spherical aggregate, dispersed aggregates, hexagonally packed cylinders, and ordered lamellar structures at different concentrations of DHBC. Phase diagrams of structures against concentration of DHBC are presented for these two methods, and the stabilities of structures obtained with the two methods are compared.
进行耗散粒子动力学(DPD)模拟,以研究在双亲水嵌段共聚物(DHBC)存在下疏水性纳米颗粒的聚集情况。在没有DHBC的情况下会形成单个紧密的球形纳米颗粒聚集体。详细研究了聚集体对DHBC浓度持续增加的响应。我们观察到,在缓慢添加DHBC链时,会从单个球形聚集体开始演变,经过单个椭圆形聚集体、单个板状聚集体、单个长而卷曲的棒状聚集体、分散的聚集体,然后到六方堆积圆柱体,最终形成有序的层状结构。然而,当在模拟开始时同时将纳米颗粒和DHBC添加到系统中时,在不同浓度的DHBC下,我们仅获得单个球形聚集体、分散的聚集体、六方堆积圆柱体和有序的层状结构。给出了这两种方法针对DHBC浓度的结构相图,并比较了用这两种方法获得的结构的稳定性。