Zn2+/Cd2+ optical discrimination by fluorescent acridine-based bis-macrocylic receptors

M. Carla Aragoni
First
Member of the Collaboration Group
;
Massimiliano Arca
Second
Member of the Collaboration Group
;
Claudia Caltagirone
Member of the Collaboration Group
;
Alessandra Garau
Member of the Collaboration Group
;
Francesco Isaia
Member of the Collaboration Group
;
Vito Lippolis
Member of the Collaboration Group
;
2017-01-01

Abstract

A new acridine-based fluorescent chemosensor, L2, featuring two sulfurated macrocyclic units has been synthesised. Proton and metal binding properties of L2 have been studied in H2O/CH3CN (1:1 v/v) by potentiometric and spectrophotometric measurements and compared with those of the analogous and previously published bis-macrocyclic receptor featuring two [9]aneN3 units (L1). Despite a thermodynamic selectivity observed for Zn2+ with both L1 and L2, L2 shows a marked sensing selectivity towards Cd2+ via a chelation enhancement of fluorescence (CHEF) effect both in H2O/CH3CN (1:1 v/v) and in H2O using silica core-PEG shell nanoparticles as vehiculant. On the other hand, L1 shows a selective optical sensing towards Zn2+ in agreement with the thermodynamic selectivity observed for the same metal ion.
2017
Inglese
29
11
912
921
10
Esperti anonimi
internazionale
scientifica
Fluorescent chemosensors; Acridine; Zn2+/Cd2+ optical discrimination; Thio/aza macrocycles
no
Carla Aragoni, M.; Arca, Massimiliano; Bencini, Andrea; Caltagirone, Claudia; Conti, Luca; Garau, Alessandra; Valtancoli, Barbara; Isaia, Francesco; Lippolis, Vito; Palomba, Francesco; Prodi, Luca; Zaccheroni, Nelsi
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
12
reserved
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