Abstract
This study reports the synthesis of polyurethane-lignin copolymer blended with carbon multilayer nanotubes to be used in all-solid-state potentiometric chemical sensors. Knownapplicability of lignin-based polyurethanes doped with carbon nanotubes for chemical sensing was extended to eucalyptus LignoBoost® kraft lignin containing increased amounts of polyphenolic groups from concomitant tannins that were expected to impart specificity and sensitivity to the sensing material. Synthesized polymers were characterized using FT-MIR spectroscopy, electrical impedance spectroscopy, scanning electron microscopy, thermogravimetric analysis, and differential scanning calorimetry and are used for manufacturing of all solid-state potentiometric sensors. Potentiometric sensor with LignoBoost® kraft lignin-based polyurethane membrane displayed theoretical response and high selectivity to Cu (II) ions, as well as long-term stability.
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CITATION STYLE
Gonçalves, S. S. L., Rudnitskaya, A., Sales, A. J. M., Costa, L. M. C., & Evtuguin, D. V. (2020). Nanocomposite polymeric materials based on eucalyptus lignoboost® kraft lignin for liquid sensing applications. Materials, 13(7). https://doi.org/10.3390/ma13071637
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