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Achievement of Unidirectional Aluminum Tin Oxide/UV-Curable Polymer Hybrid Film via UV Nanoimprinting Lithography for Uniform Liquid Crystal Alignment

Authors
이동욱김동현원종훈오진영Dae-Shik SEO
Issue Date
Jun-2022
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Keywords
UV nanoimprint lithography; aluminum tin oxide; unidirectional nanostructure; liquid crystal; alignment layer
Citation
Crystals, v.12, no.6, pp 855-1 - 855-11
Journal Title
Crystals
Volume
12
Number
6
Start Page
855-1
End Page
855-11
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/6766
DOI
10.3390/cryst12060855
ISSN
2073-4352
2073-4352
Abstract
A uniform unidirectional nanostructure composed of aluminum tin oxide and ultraviolet (UV)-curable polymer is introduced herein. The nanostructure was produced by UV-nanoimprint lithography (UV-NIL), and the fabricated hybrid film was used as a uniform liquid crystal (LC) alignment layer. Atomic force microscopy and line profile analysis were performed to confirm a well-ordered nanostructure with 760 nm periodicity and 30 nm height. X-ray photoelectron spectroscopy analysis was also conducted to examine the chemical modifications to the hybrid film surface during UV exposure. Optical transmittance investigation of the nanopatterned hybrid film revealed its compatibility for LC device application. Stable, uniform, and homogeneous LC alignment on the hybrid film was confirmed by polarized optical microscopy observance and analysis of LC pretilt angle. The unidirectional structure on the film surface enabled uniform LC orientation along with surface anisotropy property. Hence, we expect that the proposed UV-NIL process can be applied to fabricate high-resolution unidirectional nanostructures with various inorganic/organic hybrid materials and that these nanostructures have high potential for next-generation LC systems.
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공과대학 전기전자공학과
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