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基于三唑的新型双席夫碱比色和荧光开启双化学传感器用于检测铜和铅:应用于活细胞成像和分子逻辑门

Triazole-based novel bis Schiff base colorimetric and fluorescent turn-on dual chemosensor for Cu and Pb: application to living cell imaging and molecular logic gates.

作者信息

Rout Kalyani, Manna Amit Kumar, Sahu Meman, Mondal Jahangir, Singh Sunil K, Patra Goutam K

机构信息

Department of Chemistry, Guru Ghasidas Vishwavidyalaya Bilaspur CG India

出版信息

RSC Adv. 2019 Aug 19;9(44):25919-25931. doi: 10.1039/c9ra03341f. eCollection 2019 Aug 13.

Abstract

A triazole-based novel bis Schiff base colorimetric and fluorescent chemosensor (L) has been designed, synthesized and characterized by elemental analysis, H-NMR, ESI-MS, FTIR spectra and DFT studies. The receptor L showed selective and sensitive colorimetric sensing ability for Cu and Pb ions by changing color from colorless to yellow and light yellow respectively in CHOH-tris-buffer (1 : 1, v/v). However, it displayed strong fluorescence enhancement upon the addition of both Cu and Pb ions, attributed to the blocking of PET. The fluorometric detection limits for Cu and Pb were found to be 12 × 10 M and 9 × 10 M and the colorimetric detection limits were 3.7 × 10 M and 1.2 × 10 M respectively; which are far below the permissible concentration in drinking water determined by WHO. Moreover, it was found that chemosensor L worked as a reversible fluorescence probe towards Cu and Pb ions by the accumulation of S and EDTA respectively. Based on the physicochemical and analytical methods like ESI-mass spectrometry, Job plot, FT-IR, H-NMR spectra and DFT studies the detection mechanism may be explained as metal coordination, photoinduced electron transfer (PET) as well as an internal charge transfer (ICT) process. The sensor could work in a pH span of 4.0-12.0. The chemosensor L shows its application potential in the detection of Cu and Pb in real samples, living cells and building of molecular logic gate.

摘要

设计、合成了一种基于三唑的新型双席夫碱比色和荧光化学传感器(L),并通过元素分析、氢核磁共振、电喷雾电离质谱、傅里叶变换红外光谱和密度泛函理论研究对其进行了表征。受体L在CHOH-三羟甲基氨基甲烷缓冲液(1:1,v/v)中,通过分别从无色变为黄色和浅黄色,对铜离子和铅离子表现出选择性和灵敏的比色传感能力。然而,加入铜离子和铅离子后,它都表现出强烈的荧光增强,这归因于光致电子转移的受阻。铜离子和铅离子的荧光检测限分别为12×10⁻⁶M和9×10⁻⁶M,比色检测限分别为3.7×10⁻⁶M和1.2×10⁻⁶M;这些值远低于世界卫生组织规定的饮用水允许浓度。此外,发现化学传感器L分别通过硫和乙二胺四乙酸的积累,作为对铜离子和铅离子的可逆荧光探针。基于电喷雾电离质谱、乔布图、傅里叶变换红外光谱、氢核磁共振光谱和密度泛函理论研究等物理化学和分析方法,检测机制可解释为金属配位、光致电子转移(PET)以及内电荷转移(ICT)过程。该传感器可在pH值为4.0 - 12.0的范围内工作。化学传感器L在实际样品、活细胞中铜离子和铅离子的检测以及分子逻辑门的构建方面显示出应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/285b/9070313/bb061c017761/c9ra03341f-s1.jpg

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