联锁
材料科学
聚酰亚胺
稳健性(进化)
纳米尺度
纳米技术
纳米结构
墨水池
纳米线
接触印刷品
聚合物
3D打印
基质(水族馆)
图层(电子)
复合材料
机械工程
化学
生物化学
海洋学
地质学
工程类
基因
作者
Yongrok Jeong,Hyeokjung Kang,Zhi‐Jun Zhao,Junseong Ahn,Soon Hyoung Hwang,Sohee Jeon,Jiwoo Ko,Joo‐Yun Jung,Inkyu Park,Jun‐Ho Jeong
标识
DOI:10.1016/j.apsusc.2021.149500
摘要
The importance of the nanotransfer technique has been increased owing to its possibility in nanoscale mass-production, enabled by cost-effective and simply fabricable features. In this study, we developed a novel method for robust nanotransfer printing based on imidization-induced mechanical interlocking. The proposed imidization-induced nanotransfer printing (InTP) method enables various metal nanostructures to be easily transferred onto a polyimide substrate based on the mechanical interlocking force by using a controlled imidization process. The designed functional nanopatterns are transferred with high robustness. In addition, using a partial imidization process, we apply an additional adhesion force at the pattern-substrate interface to transfer materials with poor intrinsic adhesion, such as nickel, successfully. Owing to the exceptional robustness of the method, various 3D nanostructures, such as asymmetric sidewalls, suspended nanowires, and dual-layer line patterns, can be successfully transferred. Moreover, the InTP method was used to fabricate a uniform and high-temperature film heater and an asymmetric blind film.
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