Department of Polymer Science and Engineering, Faculty of Engineering, Yamagata University, Yonezawa, Yamagata 992-8510, Japan.
Langmuir. 2010 Aug 3;26(15):12703-8. doi: 10.1021/la1018289.
The stereocomplex formation between isotactic and syndiotactic poly(methyl methacrylate) (it-PMMA, st-PMMA) in a Langmuir monolayer was studied by surface pressure-area isotherms and atomic force microscopy (AFM). We found that the stereocomplex formation was highly sensitive to the compression rate of the monolayer. At a normal compression rate of 0.5 mm/s provided by the moving barrier, the blend monolayer formed a clear phase separation of the it- and st-PMMA domains at 1 mN/m. Further compression to 15 mN/m resulted in a limited degree of stereocomplexation, mainly at the interface between the two domains. However, at a 1/50 slower compression rate of 0.01 mm/s, the blend did not form a clear phase separation at 1 mN/m and quantitatively formed a stereocomplex at 15 mN/m. This apparent immiscibility observed at the faster compression rate was found to be kinetically induced as a result of the rapid compression of the phase-separated mixture at the dilute state because it-PMMA and st-PMMA form expanded and condensed monolayer, respectively. On the other hand, at the slower compression rate, the blend formed a thermodynamically miscible phase, and as a result, the stereocomplex was quantitatively formed. This apparent phase separation of a mixed monolayer composed of an expanded and a condensed monolayer should be a common phenomenon for similar systems and might have caused misjudgment of the miscibility in such cases. The compression rate dependence should be carefully evaluated in order to determine the precise miscibility of blended monolayers in similar systems.
全同立构和间同立构聚甲基丙烯酸甲酯(it-PMMA、st-PMMA)在 Langmuir 单层膜中的立体复合物形成通过表面压-面积等温线和原子力显微镜(AFM)进行了研究。我们发现,立体复合物的形成对单层膜的压缩速率非常敏感。在移动挡板提供的正常压缩速率 0.5mm/s 下,混合物单层在 1mN/m 时形成了 it-PMMA 和 st-PMMA 域的明显相分离。进一步压缩至 15mN/m 导致立体复合物化程度有限,主要发生在两个域之间的界面处。然而,在 0.01mm/s 的 1/50 较慢压缩速率下,混合物在 1mN/m 时没有形成明显的相分离,在 15mN/m 时定量形成了立体复合物。在较快的压缩速率下观察到的这种明显的不混溶性被发现是由于在稀溶液中快速压缩相分离混合物的动力学诱导的,因为 it-PMMA 和 st-PMMA 分别形成扩展和凝聚的单层膜。另一方面,在较慢的压缩速率下,混合物形成了热力学可混相,因此,立体复合物被定量形成。由扩展和凝聚单层膜组成的混合单层膜的这种明显相分离对于类似的体系应该是一种常见现象,并且可能导致在这种情况下对混溶性的错误判断。为了确定类似体系中混合单层膜的精确混溶性,应仔细评估压缩速率的依赖性。