Han Zhi-Xiang, Luo Hong-Yuan, Zhang Xiao-Bing, Kong Rong-Mei, Shen Guo-Li, Yu Ru-Qin
State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry & Chemical Engineering, Hunan University, Changsha 410082, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2009 Jun;72(5):1084-8. doi: 10.1016/j.saa.2009.01.003. Epub 2009 Jan 9.
Quinolin-8-ol p-[10',15',20'-triphenyl-5'-porphyrinyl]benzoate (1) was synthesized for the first time and developed as a ratiometric fluorescent chemosensor for recognition of Hg(2+) ions in aqueous ethanol with high selectivity. The 1-Hg(2+) complexation quenches the fluorescence of porphyrin at 646nm and induces a new fluorescent enhancement at 603nm. The fluorescent response of 1 towards Hg(2+) seems to be caused by the binding of Hg(2+) ion with the quinoline moiety, which was confirmed by the absorption spectra and (1)H NMR spectrum. The fluorescence response fits a Hill coefficient of 1 (1.0308), indicating the formation of a 1:1 stoichiometry for the 1-Hg(2+) complex. The analytical performance characteristics of the chemosensor were investigated. The sensor shows a linear response toward Hg(2+) in the concentration range of 3x10(-7) to 2x10(-5)M with a limit of detection of 2.2x10(-8)M. Chemosensor 1 shows excellent selectivity to Hg(2+) over transition metal cations except Cu(2+), which quenches the fluorescence of 1 to some extent when it exists at equal molar concentration. Moreover, the chemosensor are pH-independent in 5.0-9.0 and show excellent selectivity for Hg(2+) over transition metal cations.
喹啉 - 8 - 醇对 - [10',15',20'-三苯基 - 5'-卟啉基]苯甲酸酯(1)首次合成,并被开发为一种比率型荧光化学传感器,用于在乙醇水溶液中高选择性地识别Hg(2+)离子。1与Hg(2+)的络合作用使卟啉在646nm处的荧光猝灭,并在603nm处诱导新的荧光增强。1对Hg(2+)的荧光响应似乎是由Hg(2+)离子与喹啉部分的结合引起的,这通过吸收光谱和(1)H NMR光谱得到证实。荧光响应符合希尔系数为1(1.0308),表明1与Hg(2+)络合物形成1:1的化学计量比。研究了该化学传感器的分析性能特征。该传感器在3×10(-7)至2×10(-5)M的浓度范围内对Hg(2+)呈线性响应,检测限为2.2×10(-8)M。化学传感器1对Hg(2+)表现出优异的选择性,对除Cu(2+)外的过渡金属阳离子具有良好的选择性,当Cu(2+)以等摩尔浓度存在时,会在一定程度上猝灭1的荧光。此外,该化学传感器在5.0 - 9.0的pH范围内不依赖于pH值,并且对Hg(2+)表现出优于过渡金属阳离子的优异选择性。