Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/70765
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dc.contributor.authorZerafa, Nicole-
dc.contributor.authorCini, Miriam-
dc.contributor.authorMagri, David C.-
dc.date.accessioned2021-03-09T15:07:49Z-
dc.date.available2021-03-09T15:07:49Z-
dc.date.issued2021-
dc.identifier.citationZerafa, N., Cini, M., & Magri, D. C. (2021). Molecular engineering of 1,3,5-triaryl-2-pyrazoline fluorescent logic systems responsive to acidity and oxidisability and attachment to polymer beads. Molecular Systems Design & Engineering, 6, 93-99.en_GB
dc.identifier.urihttps://www.um.edu.mt/library/oar/handle/123456789/70765-
dc.description.abstract1,3,5-Triaryl-2-pyrazolines were designed, synthesised and covalently immobilised onto submillimetre TentaGel® polystyrene beads (functionalised with amino-terminated polyethyleneglycol ligands) by peptide bond formation. The molecules are modularly designed based on photoinduced electron transfer (PET) according to electron-donor–spacer–fluorophore–receptor and receptor1–spacer–fluorophore–receptor formats with ferrocene and N,N-dimethylaniline as the electron donor and receptor. A reference fluorophore–receptor compound, associated with an internal charge transfer (ICT) mechanism, is included for comparison. A carboxylate moiety at the para-position of the 1-phenyl ring assists the molecules with aqueous solubility and serves as the site for covalent attachment to the polystyrene beads. The H+, Fe3+- driven INHIBIT, H+-driven off–on–off and H+-driven NOT logic systems are demonstrated in aqueous methanol and attached onto heterogeneous polymer submillimeter beads. The INHIBIT gate was tested with the stronger oxidant, ammonium persulfate, which resulted in a greater fluorescence quantum yield (Φf = 0.192). A double-tagged polymer bead integrating INHIBIT and off–on–off multi-valued logic was also prepared.en_GB
dc.language.isoenen_GB
dc.publisherRoyal Society of Chemistryen_GB
dc.rightsinfo:eu-repo/semantics/restrictedAccessen_GB
dc.subjectCharge transferen_GB
dc.subjectFluorescenceen_GB
dc.subjectChemistry -- Researchen_GB
dc.titleMolecular engineering of 1,3,5-triaryl-2-pyrazoline fluorescent logic systems responsive to acidity and oxidisability and attachment to polymer beadsen_GB
dc.typearticleen_GB
dc.rights.holderThe copyright of this work belongs to the author(s)/publisher. The rights of this work are as defined by the appropriate Copyright Legislation or as modified by any successive legislation. Users may access this work and can make use of the information contained in accordance with the Copyright Legislation provided that the author must be properly acknowledged. Further distribution or reproduction in any format is prohibited without the prior permission of the copyright holder.en_GB
dc.description.reviewedpeer-revieweden_GB
dc.identifier.doi10.1039/d0me00136h-
dc.publication.titleMolecular Systems Design & Engineeringen_GB
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