Fabrication of long-lasting multilayers of diacetylene@silica nanoparticles patterned on solids for sensory figures

Fabrication of long-lasting multilayers of diacetylene@silica nanoparticles patterned on solids for sensory figures
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초록

Diacetylene (DA) vesicles were immobilized on a substrate using silica nanoparticles shell by the layerby-layer method to develop a sensory figure multilayer. Silica nanoparticles were densely formed on the surface of the DA vesicle by surface modification and electrostatic interactions; these nanoparticles function as shell on the surface of the vesicles, enhancing the surface activity and structural stability of the vesicles. The DA-silica core-shell nanoparticles can be easily immobilized on rigid, flexible, and porous substrates. In addition, alphabet patterning was achieved by photopolymerization of the substrate on a photomask for the development of visible and fluorescent sensors. Using this polydiacetylene (PDA)based patterning sensory figure, chemical stimuli were recognized within 5 s, signaled by a blue-tored color change and photoluminescence. In addition, it was confirmed that the manufactured PDAbased patterning sensory figure works normally even after 3 months, and long-lasting is possible. Based on this work, the patterning technology applicable to various substrates can be applied to the development of PDA-based sensing materials for industrial field sensors.(c) 2022 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.

키워드

Diacetylene-silica core-shell nanoparticlesLayer -by -Layer (LbL)ImmobilizationPhotomask patterningEnhanced sensory figurePOLYDIACETYLENE SUPRAMOLECULESCOLORFILMTHIN
제목
Fabrication of long-lasting multilayers of diacetylene@silica nanoparticles patterned on solids for sensory figures
제목 (타언어)
Fabrication of long-lasting multilayers of diacetylene@silica nanoparticles patterned on solids for sensory figures
저자
Won, Tae KyungRoh, JinkyuAhn, Dong June
DOI
10.1016/j.jiec.2022.06.038
발행일
2022-10-25
유형
Article
저널명
Journal of Industrial and Engineering Chemistry
114
페이지
77 ~ 83