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Documents dont l'auteur est "Camus, Anthony"

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Nombre de documents: 13

Article de revue

Khaleel, S., Gao, Z., Camus, A., Isasmendi, J., Cavarroc-Weimer, M., & Santato, C. (2025). Melanin granules extracted from Sepia ink: A nanoscale study of charge carrier transport. Journal of Physics Materials, 8(3), 035002 (10 pages). Disponible

Camus, A., Choe, S., Bour-Cardinal, C., Isasmendi, J., Cho, Y.-J., Kim, Y., Irimia, C. V., Yumusak, C., Irimia-Vladu, M., Myung, J., & Santato, C. (2024). Electrical response and biodegradation of Sepia melanin-shellac films printed on paper. Communications Materials, 5, 173 (13 pages). Disponible

Camus, A., Choe, S., Bour-Cardinal, C., Isasmendi, J., Cho, Y.-J., Kim, Y., Irimia, C. V., Yumusak, C., Irimia-Vladu, M., Rho, D., Myung, J., & Santato, C. (2024). Erratum Correction: Electrical response and biodegradation of Sepia melanin-shellac films printed on paper. Communications Materials, 5(1). Disponible

Cecchi, T., Gao, Z., Clément, C., Camus, A., Karim, A., Girard, O., & Santato, C. (2023). Recovery of gold from e-waste via food waste byproducts. Nanotechnology, 34(6), 065203 (8 pages). Disponible

Niyonkuru, D., Camus, A., Reali, M., Gao, Z., Shadrack, D. M., Butyaev, O., Surtchev, M., & Santato, C. (2023). A nanoscale study of the structure and electrical response of Sepia eumelanin. Nanoscale Advances, 5(19), 5295-5300. Disponible

Matos-Peralta, Y., Reali, M., Camus, A., Niyonkuru, D., Hosseinsizadeh, M., Gao, Z., & Santato, C. (2023). Nature as the source of materials for more sustainable organic electronics. Material Matters (1), 18-22. Lien externe

Camus, A., Reali, M., & Santato, C. (2022). Advances in high-resolution printed transistors: The case of bio-sourced organic materials. Current Opinion in Green and Sustainable Chemistry, 34, 100594 (14 pages). Lien externe

Niyonkuru, D., Carrière, A., Ambrose, R., Gouda, A., Reali, M., Camus, A., Pezzella, A., Hill, I., & Santato, C. (2022). Correction to: Locating the bandgap edges of eumelanin thinfilms for applications in organic electronics (vol 97, pg 837, 2022). Journal of Chemical Technology and Biotechnology, 97(7), 1910-1910. Lien externe

Camus, A., Reali, M., Rozel, M., Zhuldybina, M., Soavi, F., & Santato, C. (2022). High conductivity Sepia melanin ink films for environmentally benign printed electronics. Proceedings of the National Academy of Sciences, 119(32). Lien externe

Niyonkuru, D., Carrière, A., Ambrose, R., Gouda, A., Reali, M., Camus, A., Pezzella, A., Hill, I., & Santato, C. (2022). Locating the bandgap edges of eumelanin thin films for applications in organic green electronic. Journal of Chemical Technology and Biotechnology, 97(4), 837-843. Lien externe

Reali, M., Camus, A., Beaulieu, G., De Angelis, J., Pellerin, C., Pezzella, A., & Santato, C. (2021). Eumelanin: From Molecular State to Film. Journal of Physical Chemistry C, 125(6), 3567-3576. Lien externe

Commentaire ou lettre

Al-Shamery, N., Biyashev, D., Blancafort, L.́., Camus, A., Gianneschi, N. C., Graeff, C. F. O., Kohler, B., Li, S., Lu, K. Q., Lumb, J.-P., Manini, P., McNamara, M. E., Meredith, P., Bernardus Mostert, A., Nelson, T. L., Özlü, B., Rossi, V., Shanta, F., Shawkey, M. D., ... Matta, M. (2025). From melanogenesis to melanin technologies [Commentaire ou lettre]. Communications Chemistry, 8(1), 323 (13 pages). Lien externe

Thèse de doctorat

Camus, A. (2024). Printing of Bio-Sourced Organic Electronic Materials : The Sepia Melanin Study Case [Thèse de doctorat, Polytechnique Montréal]. Accès restreint

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