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用于无标记检测爆炸物的基于下转换发光的纳米传感器。

Downconversion Luminescence-Based Nanosensor for Label-Free Detection of Explosives.

作者信息

Malik Monika, Padhye Preeti, Poddar Pankaj

机构信息

Physical & Materials Chemistry Division, CSIR-National Chemical Laboratory, Pune 411008, India.

Academy of Scientific and Innovative Research (AcSIR), Anusandhan Bhawan, 2, Rafi Marg, New Delhi 110001, India.

出版信息

ACS Omega. 2019 Feb 26;4(2):4259-4268. doi: 10.1021/acsomega.8b03491. eCollection 2019 Feb 28.

Abstract

We report a selective and sensitive nanosensor probe based on polyethylenimine (PEI)-capped downconverting nanophosphors β-NaYF:Gd,Tb@PEI for the detection of 2,4,6-trinitrotoluene (TNT), both in water and buffer media. These downconverting phosphors were synthesized via a hydrothermal route and are known to show excellent chemical, thermal, and photostability. They emit sharp emission peaks centered at ∼488, 544, 584, and 619 nm, among which the peak at ∼544 nm was remarkably quenched (∼90%) by the addition of TNT without giving any new emission peak. The sensing mechanism is based on the formation of a Meisenheimer complex between the electron-rich amine-functionalized β-NaYF:Gd,Tb nanophosphors and electron-deficient TNT molecule, which was prominently visualized by the change in the color of the solution from whitish to brownish yellow, enabling visual detection, followed by luminescence resonance energy transfer between the nanophosphors and the complex. A linear range for TNT detection was obtained from 0.1 to 300 μM with a limit of detection as low as 119.9 nM. This method displayed excellent selectivity toward TNT over other nitroaromatic compounds, which had no influence on the detection. Moreover, various other classes of analytes, viz., amino acids, pesticides, and sugars, did not quench the luminescence intensity of the nanophosphors. This developed nanosensor probe possesses high, stable fluorescence brightness and capability for the selective and sensitive on-site recognition of TNT molecules in aqueous media, avoiding complicated strategies and instruments. Thus, this work promises to pave ways to many applications in the detection of ultratrace analytes.

摘要

我们报道了一种基于聚乙烯亚胺(PEI)包覆的下转换纳米磷光体β-NaYF:Gd,Tb@PEI的选择性灵敏纳米传感器探针,用于在水和缓冲介质中检测2,4,6-三硝基甲苯(TNT)。这些下转换磷光体通过水热法合成,已知具有优异的化学、热和光稳定性。它们发射出以488、544、584和619nm为中心的尖锐发射峰,其中544nm处的峰在加入TNT后显著猝灭(~90%),且未产生任何新的发射峰。传感机制基于富电子的胺官能化β-NaYF:Gd,Tb纳米磷光体与缺电子的TNT分子之间形成的迈森海默络合物,溶液颜色从白色变为棕黄色的变化显著地可视化了这一过程,实现了视觉检测,随后是纳米磷光体与络合物之间的发光共振能量转移。TNT检测的线性范围为0.1至300μM,检测限低至119.9 nM。该方法对TNT显示出优于其他硝基芳香化合物的优异选择性,其他硝基芳香化合物对检测没有影响。此外,各种其他类别的分析物,即氨基酸、农药和糖,均未猝灭纳米磷光体的发光强度。这种开发的纳米传感器探针具有高且稳定的荧光亮度,以及在水性介质中选择性灵敏地现场识别TNT分子的能力,避免了复杂的策略和仪器。因此,这项工作有望为超痕量分析物检测的许多应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94ba/6648544/c3decb8d9e51/ao-2018-034917_0001.jpg

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