Tran-Ba Khanh-Hoa, Higgins Daniel A, Ito Takashi
Department of Chemistry, Kansas State University , 213 CBC Building, Manhattan, Kansas 66506-0401, United States.
J Phys Chem B. 2014 Sep 25;118(38):11406-15. doi: 10.1021/jp507594t. Epub 2014 Sep 15.
Flow-based approaches are promising routes to preparation of aligned block copolymer microdomains within confined spaces. An in-depth characterization of such nanoscale morphologies within macroscopically nonuniform materials under ambient conditions is, however, often challenging. In this study, single-molecule tracking (SMT) methods were employed to probe the flow-induced alignment of cylindrical microdomains (ca. 22 nm in diameter) in polystyrene-poly(ethylene oxide) diblock copolymer (PS-b-PEO) films. Films of micrometer-scale thicknesses were prepared by overlaying a benzene solution droplet on a glass coverslip with a rectangular glass plate, followed by solvent evaporation under a nitrogen atmosphere. The microdomain alignment was quantitatively assessed from SMT data exhibiting the diffusional motions of individual sulforhodamine B fluorescent probes that preferentially partitioned into cylindrical PEO microdomains. Better overall microdomain orientation along the flow direction was observed near the substrate interface in films prepared at a higher flow rate, suggesting that the microdomain alignment was primarily induced by shear flow. The SMT data also revealed the presence of micrometer-scale grains consisting of highly ordered microdomains with coherent orientation. The results of this study provide insights into shear-based preparation of aligned cylindrical microdomains in block copolymer films from solutions within confined spaces.
基于流动的方法是在受限空间内制备取向嵌段共聚物微区的有前景的途径。然而,在环境条件下对宏观不均匀材料中此类纳米级形态进行深入表征往往具有挑战性。在本研究中,采用单分子追踪(SMT)方法来探测聚苯乙烯-聚(环氧乙烷)二嵌段共聚物(PS-b-PEO)薄膜中圆柱形微区(直径约22 nm)的流动诱导取向。通过将苯溶液滴与矩形玻璃板一起覆盖在玻璃盖玻片上制备微米级厚度的薄膜,然后在氮气气氛下蒸发溶剂。从SMT数据定量评估微区取向,该数据显示了优先分配到圆柱形PEO微区中的单个磺基罗丹明B荧光探针的扩散运动。在较高流速下制备的薄膜中,在基底界面附近观察到沿流动方向更好的整体微区取向,这表明微区取向主要是由剪切流诱导的。SMT数据还揭示了由具有相干取向的高度有序微区组成的微米级晶粒的存在。本研究结果为在受限空间内从溶液中制备取向圆柱形微区的基于剪切的方法提供了见解。