Department of Chemistry, Assam University, Silchar, Assam 788 011, India.
Department of Chemistry, Assam University, Silchar, Assam 788 011, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2014;121:520-6. doi: 10.1016/j.saa.2013.11.002. Epub 2013 Nov 11.
A Schiff-base fluorescent compound - N, N'-bis(salicylidene)-1,2 - phenylenediamine (LH2) was synthesized and evaluated as a chemoselective Zn(2+) sensor. Addition of Zn(2+) to ethanol solution of LH2 resulted in a red shift with a pronounced enhancement in the fluorescence intensity. Moreover, other common alkali, alkaline earth and transition metal ions failed to induce response or minimal spectral changes. Notably, this chemosensor could distinguish clearly Zn(2+) from Cd(2+). Fluorescence studies on free Schiff base ligand LH2 and LH2 - Zn(2+) complex reveal that the quantum yield strongly increases upon coordination. The stoichiometric ratio and association constant were evaluated using Benesi - Hildebrand relation giving 1:1 stoichiometry. This further corroborated 1:1 complex formation based on Job's plot analyses.
一种席夫碱荧光化合物 - N,N'-双(水杨醛)-1,2-苯二胺(LH2)被合成并评估为一种对锌(2+)具有选择性的化学传感器。向 LH2 的乙醇溶液中加入锌(2+)会导致红移,同时荧光强度显著增强。此外,其他常见的碱金属、碱土金属和过渡金属离子无法引起响应或光谱发生最小变化。值得注意的是,这种化学传感器可以清晰地区分锌(2+)和镉(2+)。对游离席夫碱配体 LH2 和 LH2-Zn(2+)配合物的荧光研究表明,配位后量子产率大大增加。通过 Benesi-Hildebrand 关系评估了计量比和结合常数,给出了 1:1 的计量比。这进一步证实了基于 Job 图分析的 1:1 配合物形成。