Abstract <p>Three pyridinyl-functionalized pyrene derivatives <b>L</b><sup><b>1</b></sup>, <b>L</b><sup><b>2</b></sup>, and <b>L</b><sup><b>3</b></sup> were synthesized, and they demonstrated colorimetric and ratiometric fluorescent responses to trivalent metal cations M<sup>3+</sup> (M = Cr, Fe, Al) over a variety of mono- and divalent metal cations. Cation to anion relay recognition was further studied with sequential specificity (M<sup>3+</sup> → HS<sup>–</sup>) using a fluorescence “off–on–off” mechanism. Compounds <b>L</b><sup><b>1</b></sup>–<b>L</b><sup><b>3</b></sup> are receptors with high selectivity for HS<sup>–</sup>, Fe<sup>3+</sup>, Al<sup>3+</sup>, and Cr<sup>3+</sup> ions in methanol/water solution. Absorption and fluorescence spectra were used to investigate the sensing process. Green or yellow fluorescence emission of <b>L</b><sup><b>1</b></sup>–<b>L</b><sup><b>3</b></sup> appeared (switch “on”) after the addition of Fe<sup>3+</sup>, Al<sup>3+</sup>, and Cr<sup>3+</sup>. Surprisingly, the complex <b>L</b>+Fe<sup>3+</sup> or <b>L</b>+Cr<sup>3+</sup> or <b>L</b>+Al<sup>3+</sup> is recovered with addition of HS<sup>–</sup> to the complex (switch “off”). Consequently, the implication (from emission) logic gate was constructed at the molecular level. The gates operate in fluorescence mode when Fe<sup>3+</sup> and HS<sup>–</sup> or Al<sup>3+</sup> and HS<sup>–</sup> or Cr<sup>3+</sup> and HS<sup>–</sup> are used as input materials, and the fluorescence intensity as outputs. Based on reversible and reproducible systems, a sequential memory unit with integrated “Writing–Reading–Erasing–Reading” behavior is developed.</p>

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A Pyrene-Based Chemosensor for Relay Fluorescence Recognition of Trivalent Cations and HS Anion with Logic Gate Function and Its Applications

  • Yang Liu,
  • Jin Tong,
  • Mengfan Su,
  • Shu-Yan Yu

摘要

Abstract

Three pyridinyl-functionalized pyrene derivatives L1, L2, and L3 were synthesized, and they demonstrated colorimetric and ratiometric fluorescent responses to trivalent metal cations M3+ (M = Cr, Fe, Al) over a variety of mono- and divalent metal cations. Cation to anion relay recognition was further studied with sequential specificity (M3+ → HS) using a fluorescence “off–on–off” mechanism. Compounds L1L3 are receptors with high selectivity for HS, Fe3+, Al3+, and Cr3+ ions in methanol/water solution. Absorption and fluorescence spectra were used to investigate the sensing process. Green or yellow fluorescence emission of L1L3 appeared (switch “on”) after the addition of Fe3+, Al3+, and Cr3+. Surprisingly, the complex L+Fe3+ or L+Cr3+ or L+Al3+ is recovered with addition of HS to the complex (switch “off”). Consequently, the implication (from emission) logic gate was constructed at the molecular level. The gates operate in fluorescence mode when Fe3+ and HS or Al3+ and HS or Cr3+ and HS are used as input materials, and the fluorescence intensity as outputs. Based on reversible and reproducible systems, a sequential memory unit with integrated “Writing–Reading–Erasing–Reading” behavior is developed.