Carelli C, Jones R A L, Young R N, Cubitt R, Dalgliesh R, Schmid F, Sferrazza M
Department of Physics, University of Surrey, Guildford, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Sep;72(3 Pt 1):031807. doi: 10.1103/PhysRevE.72.031807. Epub 2005 Sep 19.
The interfacial width of polyolefins blends has been probed as a function of distance away from the critical point by using neutron reflectivity. For strongly immiscible polymer pairs, the width of the interface increases slowly when the degree of immiscibility is decreased and the interfacial width varies with the interaction parameter chi of the polymers. Closer to the critical point the dependence on the degree of miscibility becomes stronger and the way in which the interfacial width diverges, as criticality is approached, is related to both the chain length and chi. The self-consistent field theory numerical calculations, with the additional contribution due to capillary waves, provides a good description of the width of the interface between two polymer bulk phases in particular at intermediate values of the degree of immiscibility.
通过中子反射率研究了聚烯烃共混物的界面宽度与远离临界点距离的函数关系。对于强不相容的聚合物对,当不相容程度降低时,界面宽度缓慢增加,且界面宽度随聚合物的相互作用参数χ而变化。更接近临界点时,对混溶度的依赖性变得更强,并且随着接近临界状态界面宽度发散的方式与链长和χ都有关。自洽场理论数值计算,加上毛细波的额外贡献,能很好地描述两个聚合物本体相之间的界面宽度,特别是在不相容程度的中间值时。