Bandyopadhyay Dipankar, Sharma Ashutosh, Rastogi Chaitanya
Department of Chemical Engineering, Indian Institute of Technology, Kanpur 208016, India.
Langmuir. 2008 Dec 16;24(24):14048-58. doi: 10.1021/la802404s.
A long-wave nonlinear analysis of the defect induced instabilities engendered by van der Waals forces in thin (<100 nm) viscous bilayers is presented. The major focus of this study is on generation of periodic patterns and its miniaturization by exploiting the self-organized instabilities of thin bilayers on topographically patterned substrates. A large variety of self-organized interfacial patterns such as periodic arrays of open and closed micro/nanochannels, isolated and encapsulated micro/nanodroplets, and membranes with ordered pores are obtained on different types of prepatterned substrates. In addition, we show that a bilayer can also be a suitable tool for (i) pattern transfer involving replication of the morphology of the lower layer interface to the free surface of the upper layer and (ii) generation of a mold by the upper layer material filling the periodic interstitial spaces formed by dewetting of the lower layer. Simulations suggest a profound influence of the substrate pattern directed lateral confinement, which governs the length scale of the dewetted structure when the substrate pattern periodicity is well below the spinodal length scale of the unstable bilayer. The influence of the initial configuration of the interfaces on the dewetting pathway and the dewetted structures are also shown.
本文对范德华力在薄(<100nm)粘性双层膜中引起的缺陷诱导不稳定性进行了长波非线性分析。本研究的主要重点是通过利用薄双层膜在地形图案化衬底上的自组织不稳定性来生成周期性图案及其小型化。在不同类型的预图案化衬底上获得了各种各样的自组织界面图案,如开放和封闭的微/纳米通道的周期性阵列、孤立和封装的微/纳米液滴以及具有有序孔隙的膜。此外,我们表明双层膜还可以是一种合适的工具,用于(i)图案转移,即将下层界面的形态复制到上层的自由表面,以及(ii)通过上层材料填充下层脱湿形成的周期性间隙空间来生成模具。模拟表明,当衬底图案周期性远低于不稳定双层膜的旋节线长度尺度时,衬底图案定向横向限制对脱湿结构的长度尺度有深远影响。还展示了界面初始构型对脱湿路径和脱湿结构的影响。