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Article: Hydrogen-bonded complexes of aromatic crown ethers with (9-anthracenyl)methylammonium derivatives. Supramolecular photochemistry and photophysics. PH-controllable supramolecular switching

TitleHydrogen-bonded complexes of aromatic crown ethers with (9-anthracenyl)methylammonium derivatives. Supramolecular photochemistry and photophysics. PH-controllable supramolecular switching
Authors
Issue Date1997
Citation
Journal of the American Chemical Society, 1997, v. 119, n. 44, p. 10641-10651 How to Cite?
AbstractThe (9-anthracenyl)methylammonium and (9-anthracenyl)benzylammonium tetrakis(hexafluorophosphate) salts give hydrogen-bonded complexes in CH2Cl2 with aromatic crown ethers containing dibenzo (DB) or dinaphtho (DN) units. The association constants vary from 3 x 103 to 1 x 106 M-1 in CH2Cl2, depending on the specific ammonium cation and crown ether involved. In a number of cases, pseudorotaxane-like geometries for the complexes are demonstrated by (a) 1H NMR spectroscopy in solution, (b) X-ray crystallography in the solid state, and (c) mass spectrometry in the gas phase. The results obtained by absorption, emission, and excitation spectroscopy and excited lifetimes show that, as a consequence of the hydrogen bond driven recognition process, the anthracene chromophoric unit interacts with the aromatic units of the crown ethers. In the complexes involving the DB18C6, DB24C8, and DB30C10 macrocycles, the interaction leads to the complete quenching of the fluorescence of the dialkoxybenzene moieties and parallels sensitization of the anthracene fluorescence. In the complexes of 1/5-DN38C10, both the crown and the anthracene fluorescence are completely quenched, most likely by an energy-transfer cascade involving the triplet state of the dialkoxynaphthalene moiety. In the complexes of 2/3-DN30C10, the interaction between the anthracene moiety and the naphthalene rings of the crown ether is relatively strong, as indicated by the perturbation of the absorption bands, the disappearance of the fluorescence bands of the naphthalene- and anthracene-type chromophoric units, and the appearance of a new, broad fluorescence band. The complexes can also be formed by addition of CF3COOH or CF3SO3H to CH2Cl2 solutions containing crown ether and amine. The association process between DB24C8 and (9-anthracenyl)benzylammonium salt can be reversed quantitatively upon addition of a suitable base and the complex can be formed again after treatment with acid.
Persistent Identifierhttp://hdl.handle.net/10722/333595
ISSN
2021 Impact Factor: 16.383
2020 SCImago Journal Rankings: 7.115
ISI Accession Number ID

 

DC FieldValueLanguage
dc.contributor.authorAshton, Peter R.-
dc.contributor.authorBallardini, Roberto-
dc.contributor.authorBalzani, Vincenzo-
dc.contributor.authorGómez-López, Marcos-
dc.contributor.authorLawrence, Simon E.-
dc.contributor.authorVictoria Martínez-Díaz, M.-
dc.contributor.authorMontalti, Marco-
dc.contributor.authorPiersanti, Arianna-
dc.contributor.authorProdi, Luca-
dc.contributor.authorFraser Stoddart, J.-
dc.contributor.authorWilliams, David J.-
dc.date.accessioned2023-10-06T05:20:53Z-
dc.date.available2023-10-06T05:20:53Z-
dc.date.issued1997-
dc.identifier.citationJournal of the American Chemical Society, 1997, v. 119, n. 44, p. 10641-10651-
dc.identifier.issn0002-7863-
dc.identifier.urihttp://hdl.handle.net/10722/333595-
dc.description.abstractThe (9-anthracenyl)methylammonium and (9-anthracenyl)benzylammonium tetrakis(hexafluorophosphate) salts give hydrogen-bonded complexes in CH2Cl2 with aromatic crown ethers containing dibenzo (DB) or dinaphtho (DN) units. The association constants vary from 3 x 103 to 1 x 106 M-1 in CH2Cl2, depending on the specific ammonium cation and crown ether involved. In a number of cases, pseudorotaxane-like geometries for the complexes are demonstrated by (a) 1H NMR spectroscopy in solution, (b) X-ray crystallography in the solid state, and (c) mass spectrometry in the gas phase. The results obtained by absorption, emission, and excitation spectroscopy and excited lifetimes show that, as a consequence of the hydrogen bond driven recognition process, the anthracene chromophoric unit interacts with the aromatic units of the crown ethers. In the complexes involving the DB18C6, DB24C8, and DB30C10 macrocycles, the interaction leads to the complete quenching of the fluorescence of the dialkoxybenzene moieties and parallels sensitization of the anthracene fluorescence. In the complexes of 1/5-DN38C10, both the crown and the anthracene fluorescence are completely quenched, most likely by an energy-transfer cascade involving the triplet state of the dialkoxynaphthalene moiety. In the complexes of 2/3-DN30C10, the interaction between the anthracene moiety and the naphthalene rings of the crown ether is relatively strong, as indicated by the perturbation of the absorption bands, the disappearance of the fluorescence bands of the naphthalene- and anthracene-type chromophoric units, and the appearance of a new, broad fluorescence band. The complexes can also be formed by addition of CF3COOH or CF3SO3H to CH2Cl2 solutions containing crown ether and amine. The association process between DB24C8 and (9-anthracenyl)benzylammonium salt can be reversed quantitatively upon addition of a suitable base and the complex can be formed again after treatment with acid.-
dc.languageeng-
dc.relation.ispartofJournal of the American Chemical Society-
dc.titleHydrogen-bonded complexes of aromatic crown ethers with (9-anthracenyl)methylammonium derivatives. Supramolecular photochemistry and photophysics. PH-controllable supramolecular switching-
dc.typeArticle-
dc.description.naturelink_to_subscribed_fulltext-
dc.identifier.doi10.1021/ja9715760-
dc.identifier.scopuseid_2-s2.0-16944362561-
dc.identifier.volume119-
dc.identifier.issue44-
dc.identifier.spage10641-
dc.identifier.epage10651-
dc.identifier.isiWOS:A1997YE66100011-

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