2021
DOI: 10.1007/s10895-021-02851-9
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New Polymerizable Tetraaza Macrocycle Containing Two Acridine Units for Selective Fluorescence Sensing of Metal Ions

Abstract: A new fluorescent bis(acridino)-macrocycle containing two allyl groups was synthesized and photophysically studied. Studies were carried out on metal ion recognition and selectivity-influencing effects including the determination of the relevant thermodynamic constants as logK and pKa. The proposed sensor molecule is recommended for the development of Zn2+-selective optochemical analyzers based on covalently immobilized ionophores as it has a unique pH-independent metal ion recognition ability, which is not in… Show more

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Cited by 3 publications
(7 citation statements)
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“…Aqueous solutions (2 ml, 50 mmol•l −1 ) of 24 metal salts and those of tetrabutylammonium (sterically shielded cation, which cannot be complexed) salts of The largest change in fluorescence was caused by Zn 2+ , followed by Cd 2+ and Pb 2+ as competing ions similarly to preliminary studies on the parent ionophore in acetonitrile [38]. This competition was expected as these metal ions have a very similar chemical character.…”
Section: Selectivitymentioning
confidence: 71%
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“…Aqueous solutions (2 ml, 50 mmol•l −1 ) of 24 metal salts and those of tetrabutylammonium (sterically shielded cation, which cannot be complexed) salts of The largest change in fluorescence was caused by Zn 2+ , followed by Cd 2+ and Pb 2+ as competing ions similarly to preliminary studies on the parent ionophore in acetonitrile [38]. This competition was expected as these metal ions have a very similar chemical character.…”
Section: Selectivitymentioning
confidence: 71%
“…Chemicals were purchased from Sigma-Aldrich Corporation (USA, owned by Merck, Germany) and used without further purification unless otherwise noted. The applied sensor molecule (figure 1) was prepared as reported [38].…”
Section: Chemicals and Apparatusmentioning
confidence: 99%
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“…The acridinium cation can only be present in excited state attributed to an intramolecular proton transfer, unless an anion is complexed by the macrocycle [17,18]. Moreover, in the fully protonated state a strong electrostatic repulsion takes place, which also prevents the acridines to accept a proton [15,17,18]. In contrast, if O-atoms are also parts of the macroring as nucleophile centers, coordination of cations is preferred [15,19,20] and anions are not complexed even in partially protonated forms of the macrocycles [15,19].…”
Section: Introductionmentioning
confidence: 99%