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Topographically designed hybrid nanostructures via nanotransfer printing and block copolymer self-assembly

机译:从地形上设计的混合纳米结构通过nanotransfer印刷和嵌段共聚物自组装

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Nanotransfer printing (nTP) has attracted much attention due to its high pattern resolution, simple process, and low processing cost for useful nanofabrication. Here, we introduce a thermally assisted nTP (T-nTP) process for the effective fabrication of various periodic three-dimensional (3D) nanosheets, such as concavo-convex lines, spine lines, square domes, and complex multi-line patterns. The T-nTP method allows continuous nanoscale 3D patterns with functionality to be transferred onto both rigid and flexible substrates by heat without any collapse of uniform convex nanostructures with nanochannels. We also show the pattern formation of multi-layered hybrid structures consisting of two or more materials by T-nTP. Furthermore, the formation of silicon oxide nanodots (0D) within a printed metallic nanowave structure (3D) can be achieved by the combined method of T-nTP and the self-assembly of poly(styrene-b-dimethylsiloxane) (PS-b-PDMS) block copolymers. Moreover, we demonstrate how to obtain well-defined oxide-metal hybrid nanostructures (0D-in-3D) through the spontaneous accommodation of PDMS spheres in the confined spaces of an Au-wave nanotemplate. This approach is applicable during the nanofabrication of various high-resolution devices with complex geometrical nanopatterns.
机译:Nanotransfer印刷(nTP)吸引了注意由于其高分辨率模式,简单的过程,和较低的处理成本有用的纳米加工。热辅助国家结核控制规划(T-nTP)的过程有效的制造各种周期性三维(3 d) nanosheets,等凹凸的线条,脊柱,平方穹顶,和复杂的多行模式。允许连续纳米3 d模式功能转移到两个刚性和柔性基板没有任何热量均匀凸纳米结构的崩溃纳米通道。多层混合结构组成的两个或两个以上的材料由T-nTP。形成二氧化硅nanodots (0 d)内印刷金属nanowave结构(3 d)通过T-nTP和结合的方法自组装的聚(styrene-b-dimethylsiloxane)(PS-b-PDMS)嵌段共聚物。演示如何获得良好定义的oxide-metal混合纳米结构(0 d-in-3d)通过PDMS的自发调节球体Au-wave的密闭空间nanotemplate。奈米制造各种高分辨率设备具有复杂几何nanopatterns。

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