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Surface Functionalized Fluorescent PS Nanobead Based Dual-Distinct Solid State Sensor for Detection of Volatile
Sarabjot Kaur Makkad1,2, Asha Sk1,2
1Polymer Science and Engineering Division , CSIR-National Chemical Laboratory , Dr. Homi Bhabha Road , Pune 411008 , India.
Developed dual vapor sensors using polystyrene nanobeads with two fluorophores. These sensors selectively detect nitroaromatics and amine vapors, changing color from white to yellow or blue for distinct dual analyte sensing.
Area of Science:
- Materials Science
- Nanotechnology
- Chemical Sensing
Background:
- Development of selective and sensitive vapor sensors is crucial for environmental monitoring and safety.
- Solid-state sensors offer advantages in portability and stability compared to liquid-based systems.
- Dual-analyte detection requires sophisticated sensor design capable of distinguishing multiple chemical species.
Purpose of the Study:
- To develop a novel solid-state dual vapor sensor with high quantum yield.
- To achieve selective detection of electron-deficient nitroaromatics and amine vapors.
- To demonstrate the sensor's potential for real-time applications and recyclability.
Main Methods:
- Miniemulsion polymerization was employed to synthesize polystyrene nanobeads incorporating perylenebisimide (PBI) and oligo (p-phenylenevinylene) (OPV) fluorophores.
- Selective surface functionalization with carboxy and amine groups was performed on the nanobeads.
- The emission properties of the functionalized nanobeads were investigated upon exposure to different vapor analytes.
Main Results:
- The synthesized nanobeads (70-180 nm) exhibited near-white emission under UV light.
- Exposure to nitroaromatic vapors selectively quenched OPV emission, resulting in yellow emission.
- Exposure to amine vapors selectively quenched PBI emission, resulting in blue emission.
- Functionalized nanobeads demonstrated enhanced sensing efficiency and fast responsiveness due to hydrogen bonding interactions.
- Free-standing films of the sensor showed efficient real-time detection and recyclability over 8 cycles.
Conclusions:
- A highly efficient solid-state dual vapor sensor was successfully developed using functionalized polystyrene nanobeads.
- The sensor exhibits distinct color changes (white to yellow or blue) for selective detection of nitroaromatics and amines.
- Surface functionality plays a critical role in enhancing sensor performance, enabling practical applications in reusable sensor films.
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