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Infrared Heating and Roller-Based Contact Printing Technology for the Fabrication of Micro/Nano-Structures

机译:用于制备微/纳米结构的红外加热和基于滚子的接触式印刷技术

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This paper presents a new roller-based nano-imprinting method based on the Infrared assisted metal transfer technique. It utilizes a silicon mold which is deposited with a thin metal film for pattern transferring. Another metal film which acts as an adhesion layer is also deposited on the substrate surface. An infrared light source incident from the substrate side heats up the metal films. After imprinting, the patterned metal film defined by sub-micro- and nano-scale features of the mold can be transferred from the mold to the substrate. A glass roller is introduced in this new method. Optically, the glass roller is acting like a cylindrical lens which can focus the infrared light into a line source at the mold/substrate interface. Mechanically, the roller provides a constant line-type contact pressure between the mold and substrate. In this paper, quartz substrates have been successfully patterned and, after appropriated etching processes, quartz molds are obtained.
机译:本文介绍了一种基于红外辅助金属转移技术的基于滚子的纳米压印方法。它利用硅模具沉积有薄金属膜以进行图案转印。作为粘附层的另一个金属膜也沉积在基板表面上。从基板侧入射的红外光源加热金属膜。在印记之后,可以从模具的亚微米和纳米级特征定义的图案化金属膜可以从模具转移到基板上。以这种新方法介绍了玻璃辊。光学上,玻璃辊采用圆柱形透镜,其可以将红外光聚焦到模具/衬底界面处的线源中。机械地,辊子在模具和基板之间提供恒定的线型接触压力。在本文中,石英基板已成功地图案化,并且在适当的蚀刻过程之后,获得石英模具。

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