JOURNAL ARTICLE

Solid-State Fluorescence-based Sensing of TATP via Hydrogen Peroxide Detection

Sheng-Qiang FanJonathan LaiPaul L. BurnPaul E. Shaw

Year: 2019 Journal:   ACS Sensors Vol: 4 (1)Pages: 134-142   Publisher: American Chemical Society

Abstract

Fluorenylboronate ester chromophore-based thin films were investigated for the detection of triacetone triperoxide (TATP) vapors via the decomposition product, hydrogen peroxide. Sensing with a high level of sensitivity was achieved using a fluorescence "turn-on" mechanism based on the significant shifts in the absorption and photoluminescence spectra that occurs when the boronate esters were converted to phenoxides by hydrogen peroxide under basic conditions. The addition of an organic base was found to be critical for achieving fast conversion reactions and the formation of the phenoxide anions. Addition of a nitrile group to the fluorenyl boronate ester moiety improved the stability of the material to photooxidation, increased the photoluminescence quantum yields, and enhanced the absorption and emission shifts to longer wavelengths. In real-time sensing measurements, films comprising the cyanofluorenyl boronate ester moiety and tetra- n-butylammonium hydroxide had a response time to acid-decomposed TATP vapor of seconds and a limit of detection of 40 ppb in 60 s.

Keywords:
Moiety Chemistry Hydrogen peroxide Photochemistry Fluorescence Chromophore Detection limit Photoluminescence Absorption spectroscopy Absorption (acoustics) Hydroxide Nitrile Peroxide Inorganic chemistry Organic chemistry Materials science Chromatography

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0.88
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Citation History

Topics

Luminescence and Fluorescent Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Molecular Sensors and Ion Detection
Physical Sciences →  Chemistry →  Spectroscopy
Analytical Chemistry and Sensors
Physical Sciences →  Chemical Engineering →  Bioengineering
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