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Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer

We propose an efficient alignment method for liquid crystals (LCs). A brush-coating method handles film deposition and LC alignment treatment simultaneously herein, meaning a reduction in the conventional alignment layer treatment process steps. A lanthanum yttrium strontium oxide (LaYSrO) film prep...

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Autores principales: Lee, Dong-Wook, Kim, Dong-Hyun, Oh, Jin-Young, Kim, Dae-Hyun, Choi, Se-Hoon, Kim, Jin-Ah, Park, Hong-Gyu, Seo, Dae-Shik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570725/
https://www.ncbi.nlm.nih.gov/pubmed/36234184
http://dx.doi.org/10.3390/ma15196843
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author Lee, Dong-Wook
Kim, Dong-Hyun
Oh, Jin-Young
Kim, Dae-Hyun
Choi, Se-Hoon
Kim, Jin-Ah
Park, Hong-Gyu
Seo, Dae-Shik
author_facet Lee, Dong-Wook
Kim, Dong-Hyun
Oh, Jin-Young
Kim, Dae-Hyun
Choi, Se-Hoon
Kim, Jin-Ah
Park, Hong-Gyu
Seo, Dae-Shik
author_sort Lee, Dong-Wook
collection PubMed
description We propose an efficient alignment method for liquid crystals (LCs). A brush-coating method handles film deposition and LC alignment treatment simultaneously herein, meaning a reduction in the conventional alignment layer treatment process steps. A lanthanum yttrium strontium oxide (LaYSrO) film prepared by the sol–gel process was used for the alignment layer. Topographical details of the brush-coated LaYSrO films (compared with spin-coated films) were investigated by atomic force microscopy. Spin-coated LaYSrO meant that the film formation alone without orientation treatment represented an isotropic surface. On the other hand, the 270 °C-cured brush-coated LaYSrO showed nano/microstructure with directionality. It indicates that brush-hair sweeping induced shearing stress on the sol state of the LaYSrO, which results in surface anisotropy for LC alignment. The uniform LC alignment state was confirmed by polarized optical microscopy and pretilt analysis. The brush-coated LaYSrO shows fine optical transparency compared to plain and indium-tin-oxide coated glasses, and thermal stability up to 150 °C for LC alignment. Competitive electro-optical performances of the brush-coated LaYSrO were verified in a twisted-nematic LC system compared to those of the conventionally used polyimide layer. Consequently, we expect that the brush-coating process can be an innovative technology for LC alignment.
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spelling pubmed-95707252022-10-17 Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer Lee, Dong-Wook Kim, Dong-Hyun Oh, Jin-Young Kim, Dae-Hyun Choi, Se-Hoon Kim, Jin-Ah Park, Hong-Gyu Seo, Dae-Shik Materials (Basel) Article We propose an efficient alignment method for liquid crystals (LCs). A brush-coating method handles film deposition and LC alignment treatment simultaneously herein, meaning a reduction in the conventional alignment layer treatment process steps. A lanthanum yttrium strontium oxide (LaYSrO) film prepared by the sol–gel process was used for the alignment layer. Topographical details of the brush-coated LaYSrO films (compared with spin-coated films) were investigated by atomic force microscopy. Spin-coated LaYSrO meant that the film formation alone without orientation treatment represented an isotropic surface. On the other hand, the 270 °C-cured brush-coated LaYSrO showed nano/microstructure with directionality. It indicates that brush-hair sweeping induced shearing stress on the sol state of the LaYSrO, which results in surface anisotropy for LC alignment. The uniform LC alignment state was confirmed by polarized optical microscopy and pretilt analysis. The brush-coated LaYSrO shows fine optical transparency compared to plain and indium-tin-oxide coated glasses, and thermal stability up to 150 °C for LC alignment. Competitive electro-optical performances of the brush-coated LaYSrO were verified in a twisted-nematic LC system compared to those of the conventionally used polyimide layer. Consequently, we expect that the brush-coating process can be an innovative technology for LC alignment. MDPI 2022-10-02 /pmc/articles/PMC9570725/ /pubmed/36234184 http://dx.doi.org/10.3390/ma15196843 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lee, Dong-Wook
Kim, Dong-Hyun
Oh, Jin-Young
Kim, Dae-Hyun
Choi, Se-Hoon
Kim, Jin-Ah
Park, Hong-Gyu
Seo, Dae-Shik
Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer
title Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer
title_full Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer
title_fullStr Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer
title_full_unstemmed Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer
title_short Self-Aligned Liquid Crystals on Anisotropic Nano/Microstructured Lanthanum Yttrium Strontium Oxide Layer
title_sort self-aligned liquid crystals on anisotropic nano/microstructured lanthanum yttrium strontium oxide layer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570725/
https://www.ncbi.nlm.nih.gov/pubmed/36234184
http://dx.doi.org/10.3390/ma15196843
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