Department of Chemistry and Engineering, Heze University, Heze 274500, China.
College of Agriculture and Bioengineering, Heze University, Heze 274000, China.
Molecules. 2023 Mar 30;28(7):3090. doi: 10.3390/molecules28073090.
Two new Schiff base fluorescent probes (L and S) were designed for selectively detecting Al ions in aqueous medium. Structural characterization of the purely synthesized compounds was acquired by IR, H NMR and C NMR. Moreover, their photochromic and fluorescent behaviors have been investigated systematically by UV-Vis absorption and fluorescence spectra. The two probes have both high selectivity and sensitivity toward Al ions in aqueous medium. The 2:1 stoichiometry between the Al and probes was verified by Job's plot. Moreover, the limits of detection (LOD) for Al by L and S were 1.98 × 10 and 4.79 × 10 mol/L, respectively, which was much lower than most previously reported probes. The possible recognition mechanism was that the metal ions would complex with Schiff base probes because of the prevalence of the species optimal for complex formation, inhibiting the structural isomerization of conjugated double bonds (-C=N-), inhibiting the proton transfer process in the excited state of the molecules and resulting in changes of its color and fluorescence behavior. Furthermore, the probes will have potential applications for selectively, detecting Al ions in the environmental system with high accuracy and providing a new strategy for the design and synthesis of multi-functional sensors.
两种新的席夫碱荧光探针(L 和 S)被设计用于在水相中选择性检测 Al 离子。通过红外、氢核磁共振和碳核磁共振对纯合成化合物进行了结构表征。此外,通过紫外可见吸收光谱和荧光光谱系统地研究了它们的光致变色和荧光行为。这两种探针在水相中对 Al 离子都具有高选择性和灵敏度。通过 Job 图验证了 Al 与探针之间的 2:1 化学计量关系。此外,L 和 S 对 Al 的检测限(LOD)分别为 1.98×10 和 4.79×10 mol/L,远低于大多数先前报道的探针。可能的识别机制是由于有利于形成配合物的物种的普遍存在,金属离子会与席夫碱探针络合,从而抑制共轭双键的结构异构化(-C=N-),抑制分子激发态中的质子转移过程,导致其颜色和荧光行为发生变化。此外,这些探针将有望在环境系统中以高精度选择性地检测 Al 离子,并为多功能传感器的设计和合成提供新策略。