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Kim, J., & Cicoira, F. (2026). Printable, self-healing and recyclable PEDOT:PSS/Polyurethane composites for durable bioelectronics. Materials Horizons, 33 pages. Disponible
Cicoira, F., & Kim, J. (2026). Printable, self-healing and recyclable PEDOT:PSS/Polyurethane composites for durable bioelectronics [Ensemble de données]. Lien externe
Cicoira, F., Ebrahimi, S., Petrossian, G., Khoomortezaei, S., & Quenneville, É. (2026). EDOT-Acid enables stable PEDOT coatings on Ni-P electrodes through interfacial molecular interactions [Ensemble de données]. Lien externe
Cicoira, F., Fan, J., Saygin, G. D., Mawe Noussi, C., & Dongnang Ngoula, K. C. (2026). Towards standardized high-voltage testing of printed conducting polymer electrodes: influence of electrolyte environment and pulse duration [Ensemble de données]. Lien externe
Ebrahimi, S., & Cicoira, F. (2026). Electrodeposition-Optimized PEDOT Interfaces on Printed Circuit Boards for Stable, Low-Impedance Organoid Electrophysiology [Ensemble de données]. Lien externe
Petrossian, G., Cicoira, F., Miquet-Westphal, F., & Ebrahimi, S. (2026). Double-Network PEDOT:PSS Xerogel Fibers with High Stretchability and Electrical Stability for Wearable Strain Sensing [Ensemble de données]. Lien externe
Petrossian, G., Ebrahimi, S., Cicoira, F., & Miquet-Westphal, F. (2026). Microsphere-templated conductive syntactic foams for recyclable and additively manufactured soft electronics [Ensemble de données]. Lien externe