论文标题

电动响应液晶网络的动力学兰道de Gennes理论

Dynamical Landau-de Gennes Theory for Electrically-Responsive Liquid Crystal Networks

论文作者

Kusters, Guido L. A., Verheul, Inge P., Tito, Nicholas B., van der Schoot, Paul, Storm, Cornelis

论文摘要

液晶网络将液晶的定向顺序与聚合物网络的弹性特性相结合,从而在响应式涂层领域具有巨大的应用潜力,例如,对于触觉反馈,自我清洁表面以及静态和动态模式形成。最近的实验工作通过实现了用交流电场的平面内启动液体晶体网络涂层的快速,可逆的表面调制,进一步铺平了朝着此类应用的道路。在这里,我们为电响应性液晶网络构建了兰道型理论,并执行分子动力学模拟,以解释这些实验的发现并告知有理设计策略。从定性上讲,该理论与我们的模拟一致,并重现了显着的实验特征。我们还提供了一组可测试的预测:线虫的纵横比,当将它们交联时的初始定向顺序和网络的交联部分都增加了膜上宏观变形所需的增塑时间。我们证明,对振荡电场的动态响应的特征是两个共振,这同样可以通过改变这些参数的影响,从而为微调设备设计提供了实验手柄。

Liquid crystal networks combine the orientational order of liquid crystals with the elastic properties of polymer networks, leading to a vast application potential in the field of responsive coatings, e.g., for haptic feedback, self-cleaning surfaces and static and dynamic pattern formation. Recent experimental work has further paved the way toward such applications by realizing the fast and reversible surface modulation of a liquid crystal network coating upon in-plane actuation with an AC electric field. Here, we construct a Landau-type theory for electrically-responsive liquid crystal networks and perform Molecular Dynamics simulations to explain the findings of these experiments and inform on rational design strategies. Qualitatively, the theory agrees with our simulations and reproduces the salient experimental features. We also provide a set of testable predictions: the aspect ratio of the nematogens, their initial orientational order when cross-linked into the polymer network and the cross-linking fraction of the network all increase the plasticization time required for the film to macroscopically deform. We demonstrate that the dynamic response to oscillating electric fields is characterized by two resonances, which can likewise be influenced by varying these parameters, providing an experimental handle to fine-tune device design.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源