This work deals with the behavior of a conductive carbon nanotubes-based cotton fabric, developed and proposed, as an environmental humidity and temperature sensitive element in wearable sensors. In this regard, a synthetic strategy based on the dispersion of carboxylated Multi-Walled Carbon Nanotubes (c-MWCNTs) was employed together with subsequent knife-over roll coating technique for the application of such CNTs-based conductive coating. Different chemical-physical characterization techniques have allowed to investigate the chemical composition, thermal behavior and surface morphology of the so obtained coated textiles. Sensing tests demonstrate the electrical resistance properties and sensitiveness of the CNTs-coating toward environmental humidity and temperature. The sensing features make these CNTs-coated textiles interesting as a potential component for future applications in the fields of flexible wearable electronics.
(2018). CNTs-based wearable sensors for environmental humidity and temperature detection . Retrieved from https://hdl.handle.net/10446/296365
CNTs-based wearable sensors for environmental humidity and temperature detection
Trovato, Valentina;Rosace, Giuseppe;Re, Valerio;
2018-01-01
Abstract
This work deals with the behavior of a conductive carbon nanotubes-based cotton fabric, developed and proposed, as an environmental humidity and temperature sensitive element in wearable sensors. In this regard, a synthetic strategy based on the dispersion of carboxylated Multi-Walled Carbon Nanotubes (c-MWCNTs) was employed together with subsequent knife-over roll coating technique for the application of such CNTs-based conductive coating. Different chemical-physical characterization techniques have allowed to investigate the chemical composition, thermal behavior and surface morphology of the so obtained coated textiles. Sensing tests demonstrate the electrical resistance properties and sensitiveness of the CNTs-coating toward environmental humidity and temperature. The sensing features make these CNTs-coated textiles interesting as a potential component for future applications in the fields of flexible wearable electronics.File | Dimensione del file | Formato | |
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AUTEX 2018_CNTs-based wearable sensors for environmental humidity and temperature detection.pdf
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