Dipartimento di Scienze Matematiche e Informatiche, Scienze Fisiche e Scienze della Terra , Università degli Studi di Messina , Viale F. Stagno d'Alcontres 31 , 98166 Messina , Italy.
Dipartimento di Scienze Molecolari e Nanosistemi , Università di Venezia "Ca' Foscari" , Via Torino 155 , 30172 Venezia Mestre , Italy.
J Phys Chem B. 2019 Oct 31;123(43):9272-9280. doi: 10.1021/acs.jpcb.9b08617. Epub 2019 Oct 17.
Building structures with hierarchical order through the self-assembly of smaller blocks is not only a prerogative of nature, but also a strategy to design artificial materials with tailored functions. We explore in simulation the spontaneous assembly of colloidal particles into extended structures, using spheres and size-asymmetric dimers as solute particles, while treating the solvent implicitly. Besides rigid cores for all particles, we assume an effective short-range attraction between spheres and small monomers to promote, through elementary rules, dimer-mediated aggregation of spheres. Starting from a completely disordered configuration, we follow the evolution of the system at low temperature and density, as a function of the relative concentration of the two species. When spheres and large monomers are of same size, we observe the onset of elongated aggregates of spheres, either disconnected or cross-linked, and a crystalline bilayer. As spheres grow bigger, the self-assembling scenario changes, getting richer overall, with the addition of flexible membrane sheets with crystalline order and monolayer vesicles. With this wide assortment of structures, our model can serve as a viable template to achieve a better control of self-assembly in dilute suspensions of microsized particles.
通过自组装较小的块来构建具有层次结构的结构不仅是大自然的特权,也是设计具有定制功能的人工材料的策略。我们通过模拟探索胶体粒子自发组装成扩展结构,使用球体和尺寸不对称的二聚体作为溶质粒子,同时隐含处理溶剂。除了所有粒子的刚性核外,我们假设球体和小分子之间存在有效的短程吸引力,以通过基本规则促进球体介导的二聚体聚集。从完全无序的构型开始,我们在低温和低密度下跟踪系统的演化,作为两种物质相对浓度的函数。当球体和大单体的尺寸相同时,我们观察到球体的拉长聚集体的出现,要么不连接,要么交联,还有双层晶体。随着球体的增大,自组装的情况发生了变化,总体上变得更加丰富,增加了具有晶体有序和单层囊泡的柔性膜片。通过这种广泛的结构,我们的模型可以作为实现对微尺寸颗粒稀悬浮液中自组装更好控制的可行模板。