Liang Guo-Dong, Xu Jun-Ting, Fan Zhi-Qiang
Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science & Engineering, Zhejiang University, Hangzhou, PR China.
J Phys Chem B. 2007 Oct 18;111(41):11921-8. doi: 10.1021/jp074399q.
Orientation of the lamellar microdomains in thin films of three symmetric polystyrene-b-poly(ethylene-co-butylene) block copolymers (S65E155, S156E358, and S199E452) on mica was investigated via atomic force microscopy (AFM), grazing incidence X-ray diffraction (GIXRD) and X-ray photoelectron spectroscopy (XPS). The results show that lamellar orientation in the SxEy block copolymers greatly depends on the molar mass of the block copolymers, the temperature of solvent evaporation, and annealing. The nascent thin film of the low molar mass block copolymer, S65E155, shows a multilayered structure parallel to the mica surface with the PS block at both polymer/mica and polymer/air interfaces, but the high molar mass block copolymers, S156E358 and S199E452, exhibit a structure with lamellar microdomains perpendicular to the mica surface. When the solvent is evaporated at a lower temperature, the crystallization rate is fast and a two-dimensional spherulite structure with the lamellar microdomains perpendicular to the mica surface is observed. Annealing of all the thin films with lamellar microdomains perpendicular to the mica surface leads to morphological transformation into a multilayered structure parallel to the mica surface. In all SxEy thin films on mica, the stems of PE crystals are always perpendicular to the interface between the lamellar PE and PS microdomains. A mechanism is proposed for the formation of different microdomain orientations in the thin films of semicrystalline block copolymers. When the thin film is prepared from a homogeneous solution, microdomains perpendicular to the substrate surface are formed rapidly for strongly segregated block copolymers or at a lower crystallization temperature and kinetically trapped by the strong segregation strength or solidification of crystallization, while for weakly segregated block copolymers or at slower crystallization rate, the orientation of the microdomains is dominated by surface selectivity.
通过原子力显微镜(AFM)、掠入射X射线衍射(GIXRD)和X射线光电子能谱(XPS)研究了三种对称聚苯乙烯-b-聚(乙烯-共-丁烯)嵌段共聚物(S65E155、S156E358和S199E452)在云母上的薄膜中层状微区的取向。结果表明,SxEy嵌段共聚物中的层状取向很大程度上取决于嵌段共聚物的摩尔质量、溶剂蒸发温度和退火情况。低摩尔质量嵌段共聚物S65E155的初生薄膜呈现出与云母表面平行的多层结构,PS嵌段位于聚合物/云母和聚合物/空气界面处,但高摩尔质量嵌段共聚物S156E358和S199E452呈现出层状微区垂直于云母表面的结构。当溶剂在较低温度下蒸发时,结晶速率较快,观察到层状微区垂直于云母表面的二维球晶结构。对所有层状微区垂直于云母表面的薄膜进行退火会导致形态转变为与云母表面平行的多层结构。在云母上的所有SxEy薄膜中,PE晶体的茎总是垂直于层状PE和PS微区之间的界面。提出了一种用于解释半结晶嵌段共聚物薄膜中不同微区取向形成的机制。当从均相溶液制备薄膜时,对于强分离的嵌段共聚物或在较低结晶温度下,垂直于基底表面的微区会迅速形成,并因强分离强度或结晶固化而在动力学上被捕获,而对于弱分离的嵌段共聚物或在较慢结晶速率下,微区的取向则由表面选择性主导。