Two dipicolylamine (DPA) derivatives with the pyrene and anthracene groups, 1-(pyren-1-yl)-N, N-bis-(pyridine-2-ylmethyl)benzylamine (L1) and 1-(anthracen-9-yl)-N, N-bis-(pyridine-2-ylmethyl)benzylamine (L2) were synthesized, characterized, and their affinitive properties for metal ions were studied. The mass spectroscopy and Job's plots showed that L1 and L2 reacted with Cu and formed complexes [Cu(L1)(solvent)] (L1-Cu) and [Cu(L2)(solvent)] (L2-Cu), respectively. Both L1 and L2 were fluorescent probes recognizing Cu via the emission quenching and further detecting HS via the emission revival. The probes L1 and L2 displayed high sensitivity and selectivity as well as rapid response in the detection of Cu and HS. The limit of detection (LOD) values of L1 and L2 for Cu were 16 nM and 17 nM, respectively, and those of complexes L1-Cu and L2-Cu for S were 18 nM and 19 nM, respectively. The response time of L1 and L2 was within 10 s for Cu and 20 s for S. Furthermore, L1 and L2 were applicable to the detection of Cu in actual water samples with good recovery. The efficient response of L1 and L2 to Cu and S benefited from the strong electron transfer ability of the benzyl group between the DPA and the pyrene (or anthrence) groups. It showed that the judicious combination of the linker, the dipicolylamine and the chromophore group could offer molecular systems that were promising candidates for the detection of both metal ions and anions.
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http://dx.doi.org/10.1007/s10895-024-04109-6 | DOI Listing |
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