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Textile-Based Adsorption Sensor via Mixed Solvent Dyeing with Aggregation-Induced Emission Dyesoa mark
  • Hong, Seong Gyun ;
  • Oh, Byeong M. ;
  • Kim, Jong H. ;
  • Lee, Jea Uk
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Publication Year
2024-04-01
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Citation
Materials, Vol.17
Keyword
aggregation-induced emission dyesrecycled fabricsensorsmart textilesolvent dyeing
Mesh Keyword
Aggregation-induced emission dyeAggregation-induced emissionsCosolvent mixturesDyeing methodsFluorescence intensitiesFluorescence propertiesMixed solventNovel methodologyRecycled fabricSolvent dyeing
All Science Classification Codes (ASJC)
Materials Science (all)Condensed Matter Physics
Abstract
This study demonstrates a novel methodology for developing a textile-based adsorption sensor via mixed solvent dyeing with aggregation-induced emission (AIE) dyes on recycled fabrics. AIE dyes were incorporated into the fabrics using a mixed solvent dyeing method with a co-solvent mixture of H2O and organic solvents. This method imparted unique fluorescence properties to fabrics, altering fluorescence intensity or wavelength based on whether the AIE dye molecules were in an isolated or aggregated state on the fabrics. The precise control of the H2O fraction to organic solvent during dyeing was crucial for influencing fluorescence intensity and sensing characteristics. These dyed fabrics exhibited reactive thermochromic and vaporchromic properties, with changes in fluorescence intensity corresponding to variations in temperature and exposure to volatile organic solvents (VOCs). Their superior characteristics, including a repetitive fluorescence switching property and resistance to photo-bleaching, enhance their practicality across various applications. Consequently, the smart fabrics dyed with AIE dye not only find applications in clothing and fashion design but demonstrate versatility in various fields, extending to sensing temperature, humidity, and hazardous chemicals.
ISSN
1996-1944
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/34158
DOI
https://doi.org/10.3390/ma17081745
Fulltext

Type
Article
Funding
This work was supported by the Technology Innovation Program for MSEs (S3308359, development of high durability and high toughness self-assembled fluorescent pigment composite fiber product) funded by the Ministry of MSEs and Startups.
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Kim, Jong Hyun김종현
Department of Applied Chemistry & Biological Engineering
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