4.6 Article

Aggregation-induced emission nanofiber as a dual sensor for aromatic amine and acid vapor

Journal

JOURNAL OF MATERIALS CHEMISTRY C
Volume 5, Issue 44, Pages 11532-11541

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c7tc03192k

Keywords

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Funding

  1. National Natural Science Foundation of China [21103067, 21374041]
  2. Youth Science Foundation of Jilin Province [20130522134JH]
  3. State Key Laboratory of Supramolecular Structure and Materials [SKLSSM2015014]
  4. State Laboratory of Theoretical and Computational Chemistry [K2013-02]

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Two cyano-substituted vinylacridine derivatives linked with N-dodecyl-L-phenylalaninamide through succinyl (PC2VA) and glutaryl (PC3VA) groups were synthesized and were found to exhibit aggregationinduced emission properties. These two compounds could form gels in some solvents at low concentrations and exhibit fluorescence enhancement during gelation. The gelation abilities and microstructure intermolecular interactions of these compounds were different, although their molecular structures varied by only one methylene group. Moreover, a uniform fibrous film that could be used as an effective dual sensor on glass plates was prepared using PC2VA wet gels to quantitatively detect aromatic amine and volatile acid vapors caused by the low HOMO energy level of the fluorophore and the existence of the acridine moiety as an acid binding site. The response times and detection limits( DL) for the vapors are short and low, respectively. The DL of aniline reaches 1.3 mu g m(-3) because an amplifying fluorescence quenching exists within the long nanofibers induced by efficient exciton diffusion along the pi-pi stacking direction. Moreover, the DL for trifluoroacetic acid is low and determined to be 2.3 mg m(-3).

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