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通过氮杂硼二吡咯染料在水介质中对硫化氢和一氧化氮进行灵敏的肉眼检测。

Sensitive naked eye detection of hydrogen sulfide and nitric oxide by aza-BODIPY dyes in aqueous medium.

作者信息

Adarsh Nagappanpillai, Krishnan Megha S, Ramaiah Danaboyina

机构信息

Photosciences and Photonics, Chemical Sciences and Technology Division, CSIR-National Institute for Interdisciplinary Science and Technology (CSIR-NIIST) , Trivandrum-695 019, Kerala, India.

出版信息

Anal Chem. 2014 Sep 16;86(18):9335-42. doi: 10.1021/ac502849d. Epub 2014 Aug 29.

Abstract

With an objective to develop optical probes for biologically important anions and neutral molecules, we synthesized three novel NIR absorbing aza-BODIPY derivatives, 3a-3c, and have systematically tuned their photophysical properties by changing the peripheral substitution. A profound red-shift was observed in the absorption and fluorescence spectra of the aza-BODIPY dyes with the change in substitution from azido (3a) to amino (3b) to dimethylamino (3c) groups. Theoretical calculations of 3a-3c showed a consistent decrease in bandgap, which supports the observed spectral changes. The study of their interactions with various analytes revealed that the azido-aza-BODIPY 3a selectively interacts with hydrogen sulfide (H2S) when compared to other molecules. Uniquely, the detection of H2S can be visualized through a change in color from bright blue to purple with a detection limit of 0.5 ppm. The sensitivity of the probe was observed to be ~20-fold higher than the allowed exposure limits of H2S as defined by EPA (10 ppm). The aza-BODIPY derivative 3b, on the other hand, exhibited selective interactions with nitrite ions (NO2(-)) and nitric oxide (NO) in aqueous medium through a visible color change from blue to green with a sensitivity of 20 and 0.15 ppb, respectively. In contrast, the dimethylamino-aza-BODIPY derivative, 3c, showed negligible affinity for the anions and neutral molecules tested. By tuning the photophysical properties through the judicious functionalization, the aza-BODIPY dyes thus synthesized can be utilized for the sensitive on-site detection and analysis of H2S, NO2(-), and NO in the aqueous medium.

摘要

为了开发用于生物重要阴离子和中性分子的光学探针,我们合成了三种新型近红外吸收氮杂硼二吡咯衍生物3a - 3c,并通过改变外围取代基系统地调节了它们的光物理性质。随着取代基从叠氮基(3a)变为氨基(3b)再变为二甲氨基(3c),氮杂硼二吡咯染料的吸收光谱和荧光光谱出现了显著的红移。对3a - 3c的理论计算表明带隙持续减小,这支持了观察到的光谱变化。对它们与各种分析物相互作用的研究表明,与其他分子相比,叠氮基氮杂硼二吡咯3a与硫化氢(H₂S)有选择性相互作用。独特的是,H₂S的检测可以通过颜色从亮蓝色变为紫色来可视化,检测限为0.5 ppm。观察到该探针的灵敏度比美国环境保护局(EPA)规定的H₂S允许暴露极限(10 ppm)高约20倍。另一方面,氮杂硼二吡咯衍生物3b在水性介质中与亚硝酸根离子(NO₂⁻)和一氧化氮(NO)表现出选择性相互作用,通过颜色从蓝色变为绿色来显示,灵敏度分别为20 ppb和0.15 ppb。相比之下,二甲氨基氮杂硼二吡咯衍生物3c对所测试的阴离子和中性分子的亲和力可忽略不计。通过明智的功能化调节光物理性质,这样合成的氮杂硼二吡咯染料可用于水性介质中H₂S、NO₂⁻和NO的灵敏现场检测和分析。

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