Saint Petersburg Institute for Machine Sciences, The Russian Academy of Sciences, Saint Petersburg 199178, Russia.
Institute of Molecular Physics, Polish Academy of Sciences, Smoluchowskiego 17, 60-179 Poznaǹ, Poland.
J Chem Phys. 2014 Mar 28;140(12):124705. doi: 10.1063/1.4869197.
We have carried out a numerical study of both the structural and thermodynamic properties of free-standing smectic films for the case of enhanced pair interaction in the bounding layers. Calculations, based upon the extended McMillan's mean-field theory with anisotropic forces, show that the layer-thinning transitions are characterized by abrupt drops to lower values, both for a disjoining pressure and a fluctuation-induced long-range interaction between the smectic film surfaces, and then continues to increase with a larger positive slope. Reasonable agreement between the theoretically predicted and the experimentally obtained data on the surface tension of the partially fluorinated 5-n-alkyl-2-(4-n-(perfluoroalkyl-metheleneoxy)phenyl) film has been obtained.
我们对增强边界层中对相互作用情况下的自由支撑向列膜的结构和热力学性质进行了数值研究。基于各向异性力的扩展 McMillan 平均场理论的计算表明,层减薄转变的特征是突然下降到较低的值,无论是用于离隙压力还是用于在向列膜表面之间的波动诱导的长程相互作用,然后继续以更大的正斜率增加。在部分氟化的 5-n-烷基-2-(4-n-(全氟烷基亚甲基氧基)苯基)膜的表面张力的理论预测值和实验获得值之间已经得到了合理的一致。