El-Sadek Radwa Ibrahim, Roushdy M, Magda Jules J
Department of Physics, Faculty of Science, Cairo University, Giza, Egypt 12613.
Langmuir. 2007 Jul 17;23(15):7907-10. doi: 10.1021/la700864k. Epub 2007 Jun 14.
Axisymmetric oscillating pendant drop shape analysis has been used to study the interfacial rheology of the liquid crystal 4'-pentyl-4-biphenylcarbonitrile (5CB) in water with homeotropic anchoring. Nearly spherical 5CB droplets were subjected to low frequency (1-5 mHz) volume oscillations, and the increase in tension with surface dilation was used to calculate the complex modulus. The droplet interface response is completely elastic, with no relaxations occurring on the experimental time scale. This surprising result is attributed to droplet storage of elastic energy in the form of distorted orientational distributions within the bulk (Frank elasticity) and on the surface (anchoring elasticity).
轴对称振荡悬滴形状分析已被用于研究具有垂直取向锚定的水中液晶4'-戊基-4-联苯甲腈(5CB)的界面流变学。近球形的5CB液滴受到低频(1-5毫赫兹)的体积振荡,并且利用表面膨胀时张力的增加来计算复数模量。液滴界面响应是完全弹性的,在实验时间尺度上没有弛豫现象发生。这一惊人结果归因于液滴以本体(弗兰克弹性)和表面(锚定弹性)内扭曲的取向分布形式储存弹性能量。