Paterakis, G.; Vaughan, E.; Gawade, D.R.; Murray, R.; Gorgolis, G.; Matsalis, S.; Anagnostopoulos, G.; Buckley, J.L.; O’Flynn, B.; Quinn, A.J.;
et al. Highly Sensitive and Ultra-Responsive Humidity Sensors Based on Graphene Oxide Active Layers and High Surface Area Laser-Induced Graphene Electrodes. Nanomaterials 2022, 12, 2684.
https://doi.org/10.3390/nano12152684
AMA Style
Paterakis G, Vaughan E, Gawade DR, Murray R, Gorgolis G, Matsalis S, Anagnostopoulos G, Buckley JL, O’Flynn B, Quinn AJ,
et al. Highly Sensitive and Ultra-Responsive Humidity Sensors Based on Graphene Oxide Active Layers and High Surface Area Laser-Induced Graphene Electrodes. Nanomaterials. 2022; 12(15):2684.
https://doi.org/10.3390/nano12152684
Chicago/Turabian Style
Paterakis, George, Eoghan Vaughan, Dinesh R. Gawade, Richard Murray, George Gorgolis, Stefanos Matsalis, George Anagnostopoulos, John L. Buckley, Brendan O’Flynn, Aidan J. Quinn,
and et al. 2022. "Highly Sensitive and Ultra-Responsive Humidity Sensors Based on Graphene Oxide Active Layers and High Surface Area Laser-Induced Graphene Electrodes" Nanomaterials 12, no. 15: 2684.
https://doi.org/10.3390/nano12152684
APA Style
Paterakis, G., Vaughan, E., Gawade, D. R., Murray, R., Gorgolis, G., Matsalis, S., Anagnostopoulos, G., Buckley, J. L., O’Flynn, B., Quinn, A. J., Iacopino, D., & Galiotis, C.
(2022). Highly Sensitive and Ultra-Responsive Humidity Sensors Based on Graphene Oxide Active Layers and High Surface Area Laser-Induced Graphene Electrodes. Nanomaterials, 12(15), 2684.
https://doi.org/10.3390/nano12152684