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Metal‐Cation Recognition in Water by a Tetrapyrazinoporphyrazine‐Based Tweezer Receptor
Authors:Lukas Lochman  Dr Jan Svec  Dr Jaroslav Roh  Dr Kaplan Kirakci  Dr Kamil Lang  Assoc Prof Petr Zimcik  Assoc Prof Veronika Novakova
Institution:1. Department of Pharmaceutical Chemistry and Drug Control, Faculty of Pharmacy in Hradec Kralove, Charles University in Prague, Hradec Kralove, Czech Republic;2. Department of Inorganic and Organic Chemistry, Faculty of Pharmacy in Hradec Kralove, Charles University in Prague, Hradec Kralove, Czech Republic;3. Institute of Inorganic Chemistry, v.v.i., Czech Academy of Sciences, ?e?, Czech Republic;4. http://portal.faf.cuni.cz/Groups/Azaphthalocyanine‐group/ 0000-0002-2183-1220 Department of Biophysics and Physical Chemistry, Faculty of Pharmacy in Hradec Kralove, Charles University in Prague, Hradec Kralove, Czech Republic
Abstract:A series of zinc azaphthalocyanines with two azacrowns in a rigid tweezer arrangement were prepared and the fluorescence sensing properties were investigated. The size‐driven recognition of alkali and alkaline earth metal cations was significantly enhanced by the close cooperation of the two azacrown units, in which both donor nitrogen atoms need to be involved in analyte binding to switch the sensor on. The mono‐ or biphasic character of the binding isotherms, together with the binding stoichiometry and magnitude of association constants (KA), indicated specific complexation of particular analytes. Water solvation was shown to play an important role and resulted in a strong quenching of sensor fluorescence in the ON state. The lead compound was embedded into silica nanoparticles and advantageous sensing properties towards K+ were demonstrated in water (λF=671 nm, apparent KA=82 m ?1, increase of 17×), even in the presence of (supra)physiological concentrations of Na+ and Ca2+.
Keywords:cations  crown compounds  fluorescent probes  phthalocyanines  sensors
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