Limary R, Green P F, Shull K R
Graduate Program in Materials Science and Engineering, Department of Chemical Engineering and Texas Materials Institute, The University of Texas at Austin, 78712, USA.
Eur Phys J E Soft Matter. 2002 May;8(2):103-10. doi: 10.1140/epje/i2001-10060-4.
The substrate is shown to induce substantial ordering in diblock copolymer thin films above the bulk order-disorder transition (ODT) where, thermodynamically, a phase mixed state is favored. Initially, uniform films reorganize to form a hierarchy of transient surface patterns and stable film thicknesses that depend on the initial film thickness and on the substrate. Self-consistent field calculations of the free energy of the system for different situations, depending on the relative tendency for the different block components to be attracted to the substrate and/or free surface, provide an explanation of the formation of the stable film thicknesses. A continuum picture proposed earlier by Brochard et al. provides an explanation of the wetting characteristics of this system. In some cases the ordering destabilizes the film so that dewetting occurs (wetting autophobicity), whereas in other cases the surface ordering results in a kinetic stabilization of a film that would otherwise dewet.
结果表明,在本体有序-无序转变(ODT)温度以上,该基底能在二嵌段共聚物薄膜中诱导显著的有序化,而在热力学上,相混合态更受青睐。最初,均匀薄膜会重新组织,形成一系列依赖于初始薄膜厚度和基底的瞬态表面图案和稳定的薄膜厚度。针对不同情况,根据不同嵌段组分被基底和/或自由表面吸引的相对倾向,对系统自由能进行自洽场计算,解释了稳定薄膜厚度的形成。Brochard等人之前提出的连续介质模型解释了该系统的润湿特性。在某些情况下,有序化会使薄膜失稳,从而发生去湿现象(自憎性润湿),而在其他情况下,表面有序化会导致薄膜动力学稳定,否则薄膜会发生去湿。