Dickey Michael D, Gupta Suresh, Leach K Amanda, Collister Elizabeth, Willson C Grant, Russell Thomas P
Polymer Science and Engineering Department, University of Massachusetts at Amherst, Amherst, Massachusetts 01003, USA.
Langmuir. 2006 Apr 25;22(9):4315-8. doi: 10.1021/la052954e.
A route to produce novel three-dimensional structures in thin films is demonstrated. Such structures are most difficult to produce in a simple manner without the use of multiple fabrication steps. Here, we show the generation of 3-D cage-type structures using a combination of electrohydrodynamic instabilities and dewetting in a polymer/polymer/air trilayer. Removal of one of the components by use of a selective solvent or by degradation of one of the components reveals the formation of a three-dimensional structure, where one polymer is encased in the other. Thus, by coupling an external field with a surface field inherent to the polymers, a novel fabrication strategy is shown that has clear applications in microfluidics and microelectromechanical systems with extensions to patterned surfaces and structured fluids, like block copolymers.
展示了一种在薄膜中产生新型三维结构的途径。如果不使用多个制造步骤,以简单的方式生产这种结构是极其困难的。在此,我们展示了在聚合物/聚合物/空气三层结构中利用电流体动力学不稳定性和去湿相结合的方法来生成三维笼型结构。通过使用选择性溶剂去除其中一种组分或使其中一种组分降解,揭示了三维结构的形成,其中一种聚合物被包裹在另一种聚合物中。因此,通过将外部场与聚合物固有的表面场相结合,展示了一种新颖的制造策略,该策略在微流体和微机电系统中具有明确的应用,并可扩展到图案化表面和结构化流体,如嵌段共聚物。