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Lee, Jiseok
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Orthogonal dual signaling of chemical warfare agents using polydiacetylene/upconversion nanocrystals nanocomposites

Author(s)
Oh, JongwonKim, DowonShin, YoonkyungCho, HeesuLee, Jiseok
Issued Date
2020-06
DOI
10.1088/2631-6331/ab9123
URI
https://scholarworks.unist.ac.kr/handle/201301/52888
Fulltext
https://iopscience.iop.org/article/10.1088/2631-6331/ab9123
Citation
Functional Composites and Structures, v.2, no.2
Abstract
A polydiacetylene (PDA)/upconversion nanocrystals (UCNs) sensor system has been developed for selective dual signaling of chemical warfare agents (CWAs) gases, such as G-series nerve agent simulant and blood agent. Rationally utilizing the orthogonal reaction mechanisms of the G-agent simulant and the blood agent (ClCN), oxime and benzaldehyde modified diacetylene monomers capable of rapid recognition of CWAs gases were synthesized. A PDA/UCNs embedded fiber patch having dual signaling capability was realized by interweaving the color change of PDAs and the anti-Stokes shift based optical properties of UCNs. PDA/UCNs nanocomposites fiber patches selectively display blue-to-red color and yellow to red luminescence change upon exposure to CWAs gases. These results present a provisional design principle of a rapid and selective PDA/UCNs-based CWAs gas detection system that can be used at night.
Publisher
Web Portal IOP
ISSN
2631-6331
Keyword (Author)
Blood agentDual signalingG-agentPolydiacetylene (PDA)Upconversion nanocrystals (UCNs)
Keyword
BloodNanocompositesNanocrystalsOptical propertiesPolyacetylenesChemical warfare agentsDesign PrinciplesEmbedded fibersGas detection systemsNerve agent simulantsOrthogonal reactionPolydiacetylenesRed luminescenceChemical warfare

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