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Documents publiés en "2023"

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Nombre de documents: 13

Département de génie chimique

Abbasipour, M., Kateb, P., Cicoira, F., & Pasini, D. (2023). Stretchable kirigami-inspired conductive polymers for strain sensors applications. Flexible and printed electronics, 8, 024003. Disponible

Azimi, M., Kim, C.-, Fan, J., & Cicoira, F. (2023). Effect of Ionic Conductivity of Electrolyte on Printed Planar and Vertical Organic Electrochemical Transistors. Faraday Discussions, 246, 540-555. Lien externe

Azimi, M., Subramanian, A., Fan, J., Soavi, F., & Cicoira, F. (2023). Electrical and mechanical stability of flexible, organic electrolyte-gated transistors based on iongel and hydrogels. Journal of Materials Chemistry C, 11(14), 4623-4633. Lien externe

Huyer, C., Modafferi, D., Aminzare, M., Ferraro, J., Abdali, Z., Roy, S., Saldanha, D. J., Wasim, S., Alberti, J., Feng, S., Cicoira, F., & Dorval Courchesne, N.-M. (2023). Fabrication of Curli Fiber-PEDOT:PSS biomaterials with tunable self-healing, mechanical, and electrical properties. ACS Biomaterials Science and Engineering, 9(5), 2156-2169. Lien externe

Kateb, P., Fan, J., Jinsil, K., Zhou, X., Lodygensky, G. A., & Cicoira, F. (2023). Printable, adhesive, and self-healing dry epidermal electrodes based on PEDOT:PSS and polyurethane diol. Flexible and printed electronics, 8(4), 045006 (14 pages). Disponible

Kim, C.-H., Azimi, M., Fan, J., Nagarajan, H., Wang, M., & Cicoira, F. (2023). All-printed and stretchable organic electrochemical transistors using a hydrogel electrolyte. Nanoscale, 15(7), 3263-3272. Lien externe

Petrossian, G., Kateb, P., Miquet-Westphal, F., & Cicoira, F. (2023). Advances in Electrode Materials for Scalp, Forehead, and Ear EEG: A Mini-Review. ACS Applied Bio Materials, 6(8), 3019-3032. Lien externe

Sarkar, B., Miquet-Westphal, F., Bobbara, S., George, B., Beltrame, G., Dousset, D., Wu, K., & Cicoira, F. (2023). Electromagnetic interference shielding in lightweight carbon xerogels. Materials Research Express, 10(4), 045601 (8 pages). Lien externe

Zhou, X., Kateb, P., Fan, J., Kim, J., Lodygensky, G. A., Amilhon, B., Pasini, D., & Cicoira, F. (2023). Conducting polymer films and bioelectrodes combining high adhesion and electro-mechanical self-healing. Journal of Materials Chemistry C, 10 pages. Lien externe

Zhou, X., Kateb, P., Miquet-Westphal, F., Lodygensky, A., & Cicoira, F. (2023). Soft, conductive and anti-freezing conducting polymer organohydrogels. Advanced Sensor Research, 10 pages. Lien externe

Département de génie électrique

Sarkar, B., Miquet-Westphal, F., Bobbara, S., George, B., Beltrame, G., Dousset, D., Wu, K., & Cicoira, F. (2023). Electromagnetic interference shielding in lightweight carbon xerogels. Materials Research Express, 10(4), 045601 (8 pages). Lien externe

Département de génie informatique et génie logiciel

Sarkar, B., Miquet-Westphal, F., Bobbara, S., George, B., Beltrame, G., Dousset, D., Wu, K., & Cicoira, F. (2023). Electromagnetic interference shielding in lightweight carbon xerogels. Materials Research Express, 10(4), 045601 (8 pages). Lien externe

Institut de génie biomédical

Kateb, P., Fan, J., Jinsil, K., Zhou, X., Lodygensky, G. A., & Cicoira, F. (2023). Printable, adhesive, and self-healing dry epidermal electrodes based on PEDOT:PSS and polyurethane diol. Flexible and printed electronics, 8(4), 045006 (14 pages). Disponible

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