Mastropasqua, C.; Veca, A.; Damin, A.; Brunella, V.; Cesano, F.
Functional Piezoresistive Polymer Composites Based on CO2 Laser-Irradiated Graphene Oxide-Loaded Polyurethane: Morphology, Structure, Electrical and Piezoresistive Properties. Nanomaterials 2023, 13, 168.
https://doi.org/10.3390/nano13010168
AMA Style
Mastropasqua C, Veca A, Damin A, Brunella V, Cesano F.
Functional Piezoresistive Polymer Composites Based on CO2 Laser-Irradiated Graphene Oxide-Loaded Polyurethane: Morphology, Structure, Electrical and Piezoresistive Properties. Nanomaterials. 2023; 13(1):168.
https://doi.org/10.3390/nano13010168
Chicago/Turabian Style
Mastropasqua, Chiara, Antonino Veca, Alessandro Damin, Valentina Brunella, and Federico Cesano.
2023. "Functional Piezoresistive Polymer Composites Based on CO2 Laser-Irradiated Graphene Oxide-Loaded Polyurethane: Morphology, Structure, Electrical and Piezoresistive Properties" Nanomaterials 13, no. 1: 168.
https://doi.org/10.3390/nano13010168
APA Style
Mastropasqua, C., Veca, A., Damin, A., Brunella, V., & Cesano, F.
(2023). Functional Piezoresistive Polymer Composites Based on CO2 Laser-Irradiated Graphene Oxide-Loaded Polyurethane: Morphology, Structure, Electrical and Piezoresistive Properties. Nanomaterials, 13(1), 168.
https://doi.org/10.3390/nano13010168