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Electrospun Nanofibers from a Tricyanofuran‐Based Molecular Switch for Colorimetric Recognition of Ammonia Gas
Authors:Dr. Tawfik A. Khattab  Dr. Sherif Abdelmoez  Prof. Dr. Thomas M. Klapötke
Affiliation:1. Dyeing, Printing and Auxiliaries Department, Textile Research Division, National Research Centre Dokki, Cairo, Egypt;2. Department of Chemistry, Energetic Materials Research, Ludwig Maximilian University, München, Germany), Fax: (+49)?89-2180-77492
Abstract:
A chromophore based on tricyanofuran (TCF) with a hydrazone (H) recognition moiety was developed. Its molecular‐switching performance is reversible and has differential sensitivity towards aqueous ammonia at comparable concentrations. Nanofibers were fabricated from the TCF–H chromophore by electrospinning. The film fabricated from these nanofibers functions as a solid‐state optical chemosensor for probing ammonia vapor. Recognition of ammonia vapor occurs by proton transfer from the hydrazone fragment of the chromophore to the ammonia nitrogen atom and is facilitated by the strongly electron withdrawing TCF fragment. The TCF–H chromophore was added to a solution of poly(acrylic acid), which was electrospun to obtain a nanofibrous sensor device. The morphology of the nanofibrous sensor was determined by SEM, which showed that nanofibers with a diameter range of 200–450 nm formed a nonwoven mat. The resultant nanofibrous sensor showed very good sensitivity in ammonia‐vapor detection. Furthermore, very good reversibility and short response time were also observed.
Keywords:ammonia  colorimetry  electrospinning  nanostructures  sensors
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