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在双层嵌段共聚物膜中模板化三维自组装结构。

Templating three-dimensional self-assembled structures in bilayer block copolymer films.

机构信息

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Science. 2012 Jun 8;336(6086):1294-8. doi: 10.1126/science.1218437.

Abstract

The registration and alignment of a monolayer of microdomains in a self-assembled block copolymer thin film can be controlled by chemical or physical templating methods. Although planar patterns are useful for nanoscale device fabrication, three-dimensional multilevel structures are required for some applications. We found that a bilayer film of a cylindrical-morphology block copolymer, templated by an array of posts functionalized with a brush attractive to the majority block, can form a rich variety of three-dimensional structures consisting of cylinder arrays with controllable angles, bends, and junctions whose geometry is controlled by the template periodicity and arrangement. This technique allows control of microdomain patterns and the ability to route and connect microdomains in specific directions.

摘要

单层微域在自组装嵌段共聚物薄膜中的排列和对准可以通过化学或物理模板方法来控制。虽然平面图案对于纳米级器件制造很有用,但对于某些应用来说,还需要三维多级结构。我们发现,由带有对大多数嵌段具有吸引力的刷状官能化的柱阵列模板化的圆柱形形貌嵌段共聚物的双层膜,可以形成各种丰富的三维结构,这些结构由具有可控角度、弯曲和连接的圆柱阵列组成,其几何形状由模板的周期性和排列来控制。这种技术可以控制微域图案,并能够在特定方向上引导和连接微域。

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