Bhalla Parul, Malhotra Rajesh
Department of Applied Sciences, St. Andrews Institute of Technology & Management, Farrukh Nagar, Gurugram, 122506, India.
Department of Chemistry, Guru Jambheshwar University of Science and Technology, Hisar, 125001, Haryana, India.
J Fluoresc. 2024 Sep 26. doi: 10.1007/s10895-024-03943-y.
In various fields, including analytical, environmental, and biochemistry, the detection of ions is significant. A simple probe, 3-(1-((4-aminophenyl)imino)ethyl)-4-hydroxy-6-methyl-2H-pyran-2-one (DPD), was designed for this study and used for the detection of Cu ions in methanol, based on dehydroacetic acid and phenylenediamine moieties. Binding interactions studies were performed using UV-Vis measurements, which showed selective binding behaviour towards Cu ions. The HRMS spectral data and Job's plot were used to check the stoichiometry ratio of 2:1 of a probe to Cu ions. A detection limit of 1.38×10 M for Cu ions was observed. Theoretical DFT calculations were used to determine the quantum parameters and the energy gap between frontier molecular orbitals. Interestingly, the DPD-Cu complex acted as a probe for the detection of SCN ions at a low LOD value, i.e., 1.97×10 M. A novel incidence of reversibility with SCN ions was reported using the HRMS technique. Next, real water and blood samples were used, and the concentration of Cu ions was calculated to further analyse the practical applicability of the probe. The DPD probe showed better selectivity and sensitivity than previously reported sensors, especially in complex matrices, where other sensors frequently experience interference and detection limit issues, indicating its potential as an advanced tool for ion detection in various applications.
在包括分析、环境和生物化学等各个领域,离子检测都具有重要意义。本研究设计了一种简单的探针3-(1-((4-氨基苯基)亚氨基)乙基)-4-羟基-6-甲基-2H-吡喃-2-酮(DPD),并基于脱氢乙酸和苯二胺部分用于甲醇中铜离子的检测。使用紫外-可见光谱测量进行结合相互作用研究,结果表明该探针对铜离子具有选择性结合行为。利用高分辨质谱光谱数据和乔布氏图来检验探针与铜离子的化学计量比为2:1。观察到铜离子的检测限为1.38×10⁻⁶ M。通过理论密度泛函理论(DFT)计算来确定量子参数以及前沿分子轨道之间的能隙。有趣的是,DPD-Cu络合物在低检测限(即1.97×10⁻⁶ M)下可作为检测硫氰酸根离子的探针。利用高分辨质谱技术报道了与硫氰酸根离子的一种新型可逆现象。接下来,使用实际水样和血样,并计算铜离子浓度以进一步分析该探针的实际适用性。DPD探针表现出比先前报道的传感器更好的选择性和灵敏度,特别是在复杂基质中,其他传感器经常遇到干扰和检测限问题,这表明其在各种应用中作为离子检测先进工具的潜力。