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Chemical sensing in two dimensional porous covalent organic nanosheets

Chemical Science · 2015 · Vol. 6(7) · pp. 3931–3939
Gobinda DasBishnu P. BiswalSharath KandambethV. VenkateshGagandeep KaurMatthew A. AddicoatThomas HeineSandeep VermaRahul Banerjee

Abstract

Two new imide-based crystalline, porous, and chemically stable covalent organic frameworks (COFs) (<b>TpBDH</b> and <b>TfpBDH</b>) have been successfully synthesized employing solvothermal crystallization route. Furthermore, thin layered covalent organic nanosheets (CONs) were derived from these bulk COFs by the simple liquid phase exfoliation method. These 2D CONs showcase increased luminescence intensity compared to their bulk counterparts (COFs). Notably, <b>TfpBDH</b>-CONs showcase good selectivity and prominent, direct visual detection towards different nitroaromatic analytes over <b>TpBDH</b>-CONs. Quite interestingly, <b>TfpBDH</b>-CONs exhibit a superior "turn-on" detection capability for 2,4,6-trinitrophenol (TNP) in the solid state, but conversely, they also show a "turn-off" detection in the dispersion state. These findings describe a new approach towards developing an efficient, promising fluorescence chemosensor material for both visual and spectroscopic detection of nitroaromatic compounds with very low [10<sup>-5</sup> (M)] analyte concentrations.

Covalent Organic Framework ApplicationsMetal-Organic Frameworks: Synthesis and ApplicationsLuminescence and Fluorescent MaterialsCovalent bondPorosityNanotechnologyMaterials scienceChemical engineeringChemistryOrganic chemistryEngineering

Funding

  • Council for Scientific and Industrial Research, South Africa
  • Department of Science and Technology, Ministry of Science and Technology, India
  • China Scholarship Council
  • National Science and Technology Management Information System
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