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Highly stable and recoverable humidity sensor using fluorescent quantum dot film. | LitMetric

AI Article Synopsis

  • Fluorescent sensors, like those made with quantum dots (QDs), provide accurate measurements and resist electromagnetic interference due to their electrical insulation.
  • The developed optical humidity sensor uses a QDs nanocomposite film created from polyvinyl alcohol and SiO microspheres, detecting humidity through changes in QDs fluorescence.
  • The sensor responds linearly to relative humidity (5%-97%), has quick response times (25s/20s), maintains stability for over 180 days, and is expected to be useful for environmental monitoring applications.

Article Abstract

Fluorescent sensors are resistant to electromagnetic interference and are electrically insulated, allowing for highly accurate measurements. Quantum dots (QDs) serve as outstanding sensing materials owing to the unique optical properties such as tunable photoluminescence (PL), excellent visible light activity, and high chemical and physical stability. In this paper, we develop an optical humidity sensor based on a QDs nanocomposite film. The film is made of polyvinyl alcohol (PVA), SiO microsphere (SM), and QDs through the layer-by-layer self-assembly method. The mechanism of humidity detection is moisture-induced quenching of the QDs fluorescence intensity. The results reveal that our sensor shows a good linear response to relative humidity in the range of 5% to 97%, a fast response-recovery time of 25 s and 20 s, and good repeatability for more than 50 cycles as well as high stability for over 180 days. Possessing the remarkable property, optical humidity sensors are envisaged for great potential applications in environmental monitoring.

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Source
http://dx.doi.org/10.1364/OL.460950DOI Listing

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