Thermal control of organic semiconductors for trace detection of explosives

Organic semiconductors can be applied as ultra-sensitive fluorescent sensors for detecting trace vapours of explosives. The detection of explosives is manifest by the fluorescence quenching of the sensors. However, for many organic fluorescent sensors, the fluorescence quenching is irreversible and...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2023-11, Vol.25 (43), p.29548-29555
Hauptverfasser: Ogugu, Edward B, Gillanders, Ross N, Mohammed, Salam, Turnbull, Graham A
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Sprache:eng
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Zusammenfassung:Organic semiconductors can be applied as ultra-sensitive fluorescent sensors for detecting trace vapours of explosives. The detection of explosives is manifest by the fluorescence quenching of the sensors. However, for many organic fluorescent sensors, the fluorescence quenching is irreversible and imposes a limitation in terms of reusability. Here we present a study of the thermal control of thin-film fluorescent sensors made from the commercial fluorescent polymer Super Yellow (SY). Thermal control of the sensor's temperature results in the desorption of the absorbed analytes, nitroaromatic explosives (2,4-DNT and DNB), and a taggant molecule (DMDNB). The amount of photoluminescence (PL) quenching and the desorption temperature of analytes provides a route to discriminate between the analytes, and additonally make the SY sensors reusable. The temperature dependent response of fluorescent polymer sensors for explosives enables reversable control of analyte binding and release.
ISSN:1463-9076
1463-9084
DOI:10.1039/d3cp02868b