A pillar[5]arene-based three-component supramolecular copolymer for the fluorescence detection of spermine

The supramolecular polymerization of a bis-pillar[5]arene dicarboxylic acid monomer (H) in the presence of a mixture of complementary bis-guests 1,12-dodecanediyl-bis-1,1′-1 H -imidazole (G1) and bis- N , N’ -(6-(1 H -imidazole)decyl)-perylene bisimide (G2), produces an AA/BB-type supramolecular cop...

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Veröffentlicht in:Organic Chemistry Frontiers 2024-11, Vol.11 (22), p.6293-6303
Hauptverfasser: Mazzaferro, Martina, Crisafulli, Daniele, Mancuso, Francesca, Milone, Marco, Puntoriero, Fausto, Irto, Anna, Patanè, Salvatore, Greco, Valentina, Giuffrida, Alessandro, Pisagatti, Ilenia, Notti, Anna, Parisi, Melchiorre F., Gattuso, Giuseppe
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Sprache:eng
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Zusammenfassung:The supramolecular polymerization of a bis-pillar[5]arene dicarboxylic acid monomer (H) in the presence of a mixture of complementary bis-guests 1,12-dodecanediyl-bis-1,1′-1 H -imidazole (G1) and bis- N , N’ -(6-(1 H -imidazole)decyl)-perylene bisimide (G2), produces an AA/BB-type supramolecular copolymer H/G1/G2 that retains the properties of the parent bi-component systems, that is, H/G1 solubility and H/G2 photoresponsiveness. The supramolecular copolymer showed stimuli-responsiveness, reacting to the presence of the cancer marker, spermine (S), by disassemblying and releasing G2. Once released, the perylene bisimide monomer (quenched in the copolymer by host-to-guest electron transfer), showed a remarkable increase of emission intensity. ESI-MS data are fully consistent with the formation of the H/G1/G2 copolymer, and AFM investigations on films cast from H/G1/G2 and H/G1/G2 + S solutions demonstrated that the supramolecular copolymer sensing abilities are retained also in the solid state.
ISSN:2052-4129
2052-4110
2052-4129
2052-4110
DOI:10.1039/D4QO01470G