A Combinatorial Approach for Colorimetric Differentiation of Organic Solvents Based on Conjugated Polymer-Embedded Electrospun Fibers

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초록

A combinatorial approach for the colorimetric differentiation of organic solvents is developed. A polydiacetylene (PDA)-embedded electrospun fiber mat, prepared with aminobutyric acid-derived diacetylene monomer PCDA-ABA 1, displays colorimetric stability when exposed to common organic solvents. In contrast, a fiber mat prepared with the aniline-derived diacetylene PCDA-AN 2 undergoes a solvent-sensitive color transition. Arrays of PDA-embedded microfibers; are constructed by electrospinning poly(ethylene oxide) solutions containing various ratios of two diacetylene monomers. Unique color patterns are developed when the conjugated polymer-embedded electrospun fiber arrays are exposed to common organic solvents in a manner which enables direct colorimetric differentiation of the tested solvents.

키워드

POLYDIACETYLENE VESICLESMOLECULAR ARCHITECTURESENSOR CHIPPROTEINSWATERDNATHERMOCHROMISMSUPRAMOLECULESNANOCOMPOSITESDIACETYLENES
제목
A Combinatorial Approach for Colorimetric Differentiation of Organic Solvents Based on Conjugated Polymer-Embedded Electrospun Fibers
저자
Yoon, JaewonJung, Young-SikKim, Jong-Man
DOI
10.1002/adfm.200800963
발행일
2009-01
유형
Article
저널명
Advanced Materials for Optics and Electronics
19
2
페이지
209 ~ 214