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上缘四苯并咪唑杯[4]芳烃与钙钛矿的荧光和压阻悬臂传感三硝基甲苯及通过分子动力学描绘复合物的特征。

Fluorescence and piezoresistive cantilever sensing of trinitrotoluene by an upper-rim tetrabenzimidazole conjugate of calix[4]arene and delineation of the features of the complex by molecular dynamics.

机构信息

Centre of Excellence in Nanoelectronics, Department of Electrical Engineering, §Bioinorganic Laboratory, Department of Chemistry, and ⊥Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay , Powai, Mumbai 400076, India.

出版信息

ACS Appl Mater Interfaces. 2013 Dec 26;5(24):13448-56. doi: 10.1021/am404356v. Epub 2013 Dec 10.

Abstract

A new benzimidazole-functionalized calix[4]arene receptor (R) was synthesized and characterized. The receptor R shows better selectivity toward trinitrotoluene (TNT) compared to the other nitro explosives in solution, which also retains its effectiveness for solid-phase detection. The chemical interactions of the molecule with different nitro explosive analytes were studied by fluorescence spectroscopy and by a molecular dynamics approach. The molecular dynamics studies show a 1:3 complex between R and TNT, and hence high sensitivity was imparted by fluorescence studies. The detection of explosive vapors in ambient conditions was tested by using a sensitive coating layer of R on an SU-8/CB-based piezoresistive cantilever surface. The developed device showed large sensitivity toward TNT compared to cyclotrimethylenetrinitramine (RDX) and pentaerythritol tetranitrate (PETN) in the solid state at their respective vapor pressures at room temperature. The detection sensitivity of the device was estimated to be 35 mV for TNT at ambient conditions. Moreover, the sensor does not show a response when exposed to humidity. These results demonstrate that R can be used as one of the coating materials for a cantilever for the detection of TNT using piezoresistivity measurement. R can also detect the explosives in solution with high sensitivity and selectivity by fluorescence spectroscopy.

摘要

一种新的苯并咪唑功能化杯[4]芳烃受体(R)被合成并进行了表征。与溶液中的其他硝基炸药相比,受体 R 对三硝基甲苯(TNT)表现出更好的选择性,同时也保持了固相检测的有效性。通过荧光光谱和分子动力学方法研究了分子与不同硝基爆炸物分析物的化学相互作用。分子动力学研究表明,R 与 TNT 之间存在 1:3 的复合物,因此荧光研究赋予了高灵敏度。通过在基于 SU-8/CB 的压阻悬臂表面上使用 R 的敏感涂层层,在环境条件下测试了爆炸物蒸气的检测。与固态下室温下各自蒸气压力下的环三亚甲基三硝胺(RDX)和季戊四醇四硝酸酯(PETN)相比,所开发的器件对 TNT 表现出较大的灵敏度。在环境条件下,该器件对 TNT 的检测灵敏度估计为 35 mV。此外,当暴露于湿度时,传感器没有响应。这些结果表明,R 可以用作压阻测量用于检测 TNT 的悬臂的涂层材料之一。R 还可以通过荧光光谱法以高灵敏度和选择性检测溶液中的炸药。

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