Naha Sanay, Wu Shu-Pao, Velmathi Sivan
Organic and Polymer Synthesis Laboratory, Department of Chemistry, National Institute of Technology Tiruchirappalli India
Department of Applied Chemistry, National Chiao Tung University Hsinchu Taiwan
RSC Adv. 2020 Feb 28;10(15):8751-8759. doi: 10.1039/c9ra07998j. eCollection 2020 Feb 27.
Achieving selective detection of target analytes in aqueous media continues to be an arduous proposition. Herein, we report the conceptualization and synthesis of a novel tailor-fit molecular probe R based on 1,8-naphthalimide which acts as a trifunctional molecular sensor for CN, Fe and HS. R shows colorimetric and fluorometric "on-off" relay recognition for CN (red colour and orange emission) and Fe (no colour and no emission) in 5% HO + DMSO medium which is experimentally ascertained to be a tandem deprotonation-protonation process and is supported by H-NMR titration. Among all RSS (Reactive Sulphur Species), R shows selectivity for HS through red colouration. Other coexistent anions, cations and RSS cause no discernible perturbation to the detection process. The detection of HS is attributed to a chemodosimetric reduction of the nitro to amino group as evidenced by a potentiometric titration assay. The experimental observations are well supported by DFT theoretical calculation. The for CN/Fe are 1.4 × 10 M, 6.07 × 10 M respectively and photochemical yield of R + CN is 0.86. Limit of detections for CN, Fe and HS are 17.5 nM, 8.69 μM and 8.1 μM respectively. Receptor R is effective for real time applications, bio-compatible and has been successfully employed for confocal fluorescence imaging of RAW264.7 cell and zebrafish.
在水性介质中实现对目标分析物的选择性检测仍然是一项艰巨的任务。在此,我们报告了一种基于1,8-萘二甲酰亚胺的新型定制分子探针R的概念化和合成,它作为一种对CN⁻、Fe³⁺和HS⁻的三功能分子传感器。R在5% H₂O + DMSO介质中对CN⁻(红色和橙色发射)和Fe³⁺(无颜色和无发射)表现出比色和荧光“开-关”中继识别,实验确定这是一个串联去质子化-质子化过程,并得到¹H-NMR滴定的支持。在所有活性硫物种(RSS)中,R通过红色显色对HS⁻表现出选择性。其他共存的阴离子、阳离子和RSS对检测过程没有明显干扰。HS⁻的检测归因于硝基到氨基的化学计量还原,电位滴定分析证明了这一点。实验观察结果得到了DFT理论计算的有力支持。对CN⁻/Fe³⁺的检测限分别为1.4 × 10⁻⁸ M、6.07 × 10⁻⁸ M,R + CN⁻的光化学产率为0.86。CN⁻、Fe³⁺和HS⁻的检测限分别为17.5 nM、8.69 μM和8.1 μM。受体R对实时应用有效,具有生物相容性,并已成功用于RAW264.7细胞和斑马鱼的共聚焦荧光成像。