Guo Yu-Qi, Pan Jun-Xing, Sun Min-Na, Zhang Jin-Jun
School of Physics and Information Engineering, Shanxi Normal University, Linfen 041004, China.
School of Chemistry and Materials Science, Shanxi Normal University, Linfen 041004, China.
J Chem Phys. 2017 Jan 14;146(2):024902. doi: 10.1063/1.4973560.
We investigate the phase transition of a symmetric diblock copolymer induced by nanorods with different surface chemistry. The results demonstrate that the system occurs the phase transition from a disordered structure to ordered parallel lamellae and then to the tilted layered structure as the number of rods increases. The dynamic evolution of the domain size and the order parameter of the microstructure are also examined. Furthermore, the influence of rod property, rod-phase interaction, rod-rod interaction, rod length, and polymerization degree on the behavior of the polymer system is also investigated systematically. Moreover, longer amphiphilic nanorods tend to make the polymer system form the hexagonal structure. It transforms into a perpendicular lamellar structure as the polymerization degree increases. Our simulations provide an efficient method for determining how to obtain the ordered structure on the nanometer scales and design the functional materials with optical, electronic, and magnetic properties.
我们研究了具有不同表面化学性质的纳米棒诱导的对称二嵌段共聚物的相变。结果表明,随着纳米棒数量的增加,该体系发生从无序结构到有序平行片层,再到倾斜层状结构的相变。还研究了微观结构的畴尺寸和序参量的动态演变。此外,还系统地研究了纳米棒性质、棒-相相互作用、棒-棒相互作用、棒长度和聚合度对聚合物体系行为的影响。而且,较长的两亲性纳米棒倾向于使聚合物体系形成六方结构。随着聚合度的增加,它转变为垂直片层结构。我们的模拟为确定如何在纳米尺度上获得有序结构以及设计具有光学、电子和磁性的功能材料提供了一种有效的方法。