Müller-Buschbaum P, O'Neill SA, Affrossman S, Stamm M
Max-Planck-Institut für Polymerforschung, Ackermannweg 10, 55021 Mainz, Germany, Department of Pure and Applied Chemistry, University of Strathclyde, Cathedral Street, Glasgow G1 1XL, U.K.
Macromolecules. 1998 Jul 28;31(15):5003-9. doi: 10.1021/ma971802q.
The phase separation and dewetting of thin films of blends of deuterated polystyrene (dPS) and poly(p-methylstyrene) (PpMS) were investigated during annealing. The surface morphology, obtained from atomic force microscopy and phase measurement interference microscopy, the density profile, determined by X-ray reflectivity in the region of total external reflection, and the surface composition obtained from static secondary ion mass spectroscopy, are reported. This system is only weakly incompatible. The interaction of the components with substrate and air during phase separation leads to a bilayer formation with a broad polymer-polymer interface. PpMS segregates to the air interface. The bilayer structure is unstable and defines the starting point for the dewetting of PpMS on top of the dPS layer. In the final dewetting state a homogeneous layer of dPS on top of the substrate is covered with an ultrathin layer of PpMS as well as with quite thick mesoscopic drops of PpMS.
研究了氘代聚苯乙烯(dPS)和聚对甲基苯乙烯(PpMS)共混薄膜在退火过程中的相分离和去湿现象。报告了通过原子力显微镜和相测量干涉显微镜获得的表面形貌、在全外反射区域通过X射线反射率测定的密度分布以及通过静态二次离子质谱获得的表面组成。该体系仅有微弱的不相容性。相分离过程中组分与基底和空气的相互作用导致形成具有宽聚合物-聚合物界面的双层结构。PpMS偏析到空气界面。双层结构不稳定,这为PpMS在dPS层顶部的去湿确定了起始点。在最终的去湿状态下,基底顶部的dPS均匀层覆盖着一层超薄的PpMS以及相当厚的PpMS介观液滴。