Korean Institute of Surface Engineering

pISSN : 1225-8024 | eISSN : 3399-8403


공학

한국표면공학회지 (51권6호 387-392)

Fabrication of Micro-/Nano- Hybrid 3D Stacked Patterns

나노-마이크로 하이브리드 3차원 적층 패턴의 제조

박태완;정현성;방지원;박운익;
Park, Tae Wan;Jung, Hyunsung;Bang, Jiwon;Park, Woon Ik;

한국세라믹기술원 전자융합소재본부;
Electronic Convergence Materials Division, Korea Institute of Ceramic Engineering & Technology;

DOI : 10.5695/JKISE.2018.51.6.387

Abstract

Nanopatterning is one of the essential nanotechnologies to fabricate electronic and energy nanodevices. Therefore, many research group members made a lot of efforts to develop simple and useful nanopatterning methods to obtain highly ordered nanostructures with functionality. In this study, in order to achieve pattern formation of three-dimensional (3D) hierarchical nanostructures, we introduce a simple and useful patterning method (nano-transfer printing (n-TP) process) consisting of various linewidths for diverse materials. Pt and $WO_3$ hybrid line structures were successfully stacked on a flexible polyimide substrate as a multi-layered hybrid 3D pattern of Pt/WO3/Pt with line-widths of $1{mu}m$, $1{mu}m$ and 250 nm, respectively. This simple approach suggests how to fabricate multiscale hybrid nanostructures composed of multiple materials. In addition, functional hybrid nanostructures can be expected to be applicable to various next-generation electronic devices, such as nonvolatile memories and energy harvesters.

Keywords

Nanopatterning;Nano-transfer printing;3D nanostructure;Hybrid structure;