Journal
MATERIALS LETTERS
Volume 308, Issue -, Pages -Publisher
ELSEVIER
DOI: 10.1016/j.matlet.2021.131205
Keywords
Polymers; Electrical properties; Polyaniline; Composites; Resistance recovery
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A novel PANI/SEBS film/fiber composite was developed with a continuous conductive fiber structure on the surface, improving conductivity, reducing resistance recovery time by 89%, and enhancing hysteresis effect. This material shows potential as a flexible strain sensor for human motion detection devices.
A novel polyaniline (PANI)/poly(styrene-ethylene-butadienestyrene) (SEBS) film/fiber composite was developed via the electro-spinning and solution casting method. The structure of continuous conductive fiber was successfully constructed on the surface of the PANI/SEBS film. In comparison with the simple PANI/SEBS film, this unique continuous conductive fiber structure can improve the conductivity of the composite, reduce the resistance recovery time by 89% at the maximum, and significantly improve the hysteresis effect. This material may be applied as the flexible strain sensor for manufacturing human motion detection devices.
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