Cao Wei, Zheng Xiang-Jun, Sun Ji-Ping, Wong Wing-Tak, Fang De-Cai, Zhang Jia-Xin, Jin Lin-Pei
Beijing Key Laboratory of Energy Conversion and Storage Materials, College of Chemistry, Beijing Normal University , Beijing 100875, People's Republic of China.
Inorg Chem. 2014 Mar 17;53(6):3012-21. doi: 10.1021/ic402811x. Epub 2014 Feb 26.
This paper reports a fluorescence chemosensor, N-(benzimidazol-2-yl)salicylaldimine (H2L), for Zn(II) and Al(III) ions. H2L has high selectivity for Al(III) in dimethyl sulfoxide (DMSO) and for Zn(II) in N,N-dimethylformamide (DMF). In methanol, Zn(II) and Al(III) could also be distinguished by H2L with different excitation wavelengths. The fluorescent species Zn(HL)(H2O)(CH3OH), Zn(HL)(H2O)(DMF), [Al(HL)2(OH)(H2O)], and [Al(HL)(OH)2(H2O)(DMSO)] formed in solution were established by a combination of experimental and theoretical methods, including Job's plot, (1)H NMR titration, electrospray inonization mass spectrometry (ESI-MS), and B3LYP-SCRF/6-31(d) and TD-B3LYP-SCRF/6-31G* density functional theory methods. The results show that Zn(II) and Al(III) are all coordinated to the imine nitrogen atom and the hydroxyl oxygen atom from H2L, which is the same as the M(2+) ions in the obtained mononuclear complexes [M(HL)2(CH3OH)2] (where M = Cd, Ni, Co, and Mg). The detection limits of H2L for Zn(II) were 5.98 μM in methanol and 5.76 μM in DMF, while the detection limits of H2L for Al(III) were 3.3 μM in methanol and 5.25 μM in DMSO. Furthermore, it is also confirmed that H2L has low toxicity for HeLa cells and could be used to detect Zn(II) and Al(III) ions in living cells by bioimaging.
本文报道了一种用于锌(II)和铝(III)离子的荧光化学传感器N-(苯并咪唑-2-基)水杨醛亚胺(H2L)。H2L在二甲基亚砜(DMSO)中对铝(III)具有高选择性,在N,N-二甲基甲酰胺(DMF)中对锌(II)具有高选择性。在甲醇中,锌(II)和铝(III)也可以通过H2L在不同激发波长下进行区分。通过实验和理论方法相结合,包括Job曲线、1H NMR滴定、电喷雾电离质谱(ESI-MS)以及B3LYP-SCRF/6-31(d)和TD-B3LYP-SCRF/6-31G*密度泛函理论方法,确定了溶液中形成的荧光物种[Zn(HL)(H2O)(CH3OH)]+、[Zn(HL)(H2O)(DMF)]+、[Al(HL)2(OH)(H2O)]和[Al(HL)(OH)2(H2O)(DMSO)]。结果表明,锌(II)和铝(III)均与H2L中的亚胺氮原子和羟基氧原子配位,这与所得单核配合物[M(HL)2(CH3OH)2](其中M = Cd, Ni, Co和Mg)中的M(2+)离子相同。H2L对锌(II)在甲醇中的检测限为5.98 μM,在DMF中的检测限为5.76 μM,而H2L对铝(III)在甲醇中的检测限为3.3 μM,在DMSO中的检测限为5.25 μM。此外,还证实H2L对HeLa细胞毒性低,可通过生物成像用于检测活细胞中的锌(II)和铝(III)离子。