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Documents dont l'auteur est "Gouda, Abdelaziz"

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Nombre de documents: 14

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Gouda, A., Masson, A., Hoseinizadeh, M., Soavi, F., & Santato, C. (2022). Biosourced quinones for high-performance environmentally benign electrochemical capacitors via interface engineering. Communications Chemistry, 5(1), 98 (10 pages). Disponible

Gouda, A. (2021). Biosourced Quinone-Based Molecular Materials for Electrochemical Energy Storage [Thèse de doctorat, Polytechnique Montréal]. Disponible

Gouda, A., Manioudakis, J., Naccache, R., Soavi, F., & Santato, C. (2021). 3D Network of Sepia Melanin and N- and, S-Doped Graphitic Carbon Quantum Dots for Sustainable Electrochemical Capacitors. Advanced Sustainable Systems, 5(10), 8 pages. Lien externe

Gouda, A., Liu, T., Byers, J. C., Augustynski, J., & Santato, C. (2021). Best practices in photoelectrochemistry. Journal of Power Sources, 482, 228958 (3 pages). Lien externe

Gouda, A., Masson, A., & Santato, C. (2021). Bio-Inspired Quinone Macromolecules Grafted on O, N, S, P Codoped Carbon Paper for High Energy Density Electrochemical. ECS Meeting Abstracts, MA2021-02(B01), 526-526. Lien externe

Gouda, A., Reali, M., Masson, A., Zvezdin, A., Byway, N., Rho, D., & Santato, C. (2021). Biodegradability and Compostability Aspects of Organic Electronic Materials and Devices. Dans Holuszko, M. E., Kumar, A., & Espinosa, D. C.R. (édit.), Electronic Waste : Recycling and Reprocessing for a Sustainable Future (255-297). Lien externe

Gouda, A., Reali, M., & Santato, C. (2020). Bio-Sourced, Potentially Biodegradable Materials for Fast Response Moisture Sensors. ECS Meeting Abstracts, MA2020-01(IMCS 11 :), 2425-2425. Lien externe

Gouda, A., Soavi, F., & Santato, C. (2020). Eumelanin electrodes in buffered aqueous media at different pH values. Electrochimica Acta, 347, 6 pages. Lien externe

Gouda, A., Santato, C., Bobbara, S., & Reali, M. (2019). Light-assisted melanin-based electrochemical energy storage: physicochemical aspects. Journal of Physics D: Applied Physics, 53(4), 043003 (15 pages). Lien externe

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Niyonkuru, D., Carriere, 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

Niyonkuru, D., Carriere, 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

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Reali, M., Gouda, A., Bellemare, J., Ménard, D., Nunzi, J.-M., Soavi, F., & Santato, C. (2020). Electronic Transport in the Biopigment Sepia Melanin. ACS Applied Bio Materials, 3(8), 5244-5252. Lien externe

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Xu, R., Gouda, A., Caso, M. F., Soavi, F., & Santato, C. (2020). Light-enhanced Electrochemical Energy Storage of Synthetic Melanin on Conductive Glass Substrates. MRS Advances, 5(27-28), 1441-1448. Lien externe

Xu, R., Gouda, A., Caso, M. F., Soavi, F., & Santato, C. (2019). Melanin: A Greener Route To Enhance Energy Storage under Solar Light. ACS Omega, 4(7), 12244-12251. Lien externe

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