Dev Keshav, Singh Shiva, Bhardwaj Shakshi, Kukreti Prashant, Ramakanth Dakuri, Kumar Pankaj, Saini Saakshi, Roy Partha, Srivastava Vimal Chandra, Ghosh Kaushik, Maji Pradip K
Department of Chemistry, Indian Institute of Technology Roorkee, 247667, Roorkee, Uttarakhand, India.
Department of Polymer and Process Engineering, Indian Institute of Technology Roorkee, Saharanpur campus, 247001, Saharanpur, Uttar-Pradesh, India.
Chemistry. 2024 Nov 21;30(65):e202403256. doi: 10.1002/chem.202403256. Epub 2024 Oct 31.
A newly developed dual-functional fluorescence sensing probe (phenylhydrazinyl pyridine) Schiff base (SB) has been designed with good selectivity for distinguishing Mg and Al metal ions in different solvent solutions. SB exhibits quick and visual turn-on fluorescence enhancement in response to Mg and Al detection. The addition of Mg in ACN-HEPES buffer (1 : 1, v/v, pH 7.2) at (λ=390 nm) and Al in MeOH-HEPES buffer (1 : 1, v/v, pH 7.2) at (λ=360 nm) resulted in significant enhancement of fluorescence, up to 7-9 times. These low detection limits of 7.1×10 M (7.1 μM) and 5.15×10 M (0.51 μM) for Mg and Al, respectively, have been achieved by this solvent-controlled platform. Due to the sensing potential towards Mg, the probe was utilized as an imaging material for breast cancer cells. H-NMR studies were utilized to explore SB's sensing mechanism through turn-on fluorescence. Density functional theory (DFT) calculations were utilized to validate optimized SB and its intricate geometries, which govern the sensing mechanism in the solvent environment. Such a probe has extensive potential applications in bioimaging and the assessment of the quality of wastewater.
一种新开发的双功能荧光传感探针(苯肼基吡啶)席夫碱(SB)被设计用于在不同溶剂溶液中对镁和铝金属离子进行选择性区分。SB在检测镁和铝时表现出快速且可视化的荧光增强。在乙腈 - HEPES缓冲液(1∶1,v/v,pH 7.2)中加入镁(λ = 390 nm)以及在甲醇 - HEPES缓冲液(1∶1,v/v,pH 7.2)中加入铝(λ = 360 nm)会导致荧光显著增强,增强倍数高达7至9倍。通过这种溶剂控制平台分别实现了对镁和铝的低检测限,分别为7.1×10⁻⁶ M(7.1 μM)和5.15×10⁻⁷ M(0.51 μM)。由于对镁具有传感潜力,该探针被用作乳腺癌细胞的成像材料。利用¹H - NMR研究通过荧光开启来探索SB的传感机制。利用密度泛函理论(DFT)计算来验证优化后的SB及其复杂的几何结构,这些结构在溶剂环境中决定了传感机制。这样的探针在生物成像和废水质量评估方面具有广泛的潜在应用。