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Documents dont l'auteur est "Gouda, Abdelaziz"

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Nombre de documents: 17

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Gouda, A., Merhi, N., Hmadeh, M., Cecchi, T., Santato, C., & Sain, M. (2025). Sustainable strategies for converting organic, electronic, and plastic waste from municipal solid waste into functional materials. Global Challenges, 9(4), 2400240 (23 pages). Disponible

Gouda, A., Hannouche, K., Mohan, A., Mao, C., Nikbin, E., Carrière, A., Ye, J., Howe, J. Y., Sain, M., Hmadeh, M., & Ozin, G. A. (2025). In-situ restructuring of Ni-based metal organic frameworks for photocatalytic CO₂ hydrogenation. Nature Communications, 16, 695 (12 pages). Disponible

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., Augustyński, 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 (p. 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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Hoseinizadeh, M., Davari, N., Gouda, A., Hyat, H., Sain, M., Boffito, D. C., & Santato, C. (2024). Ultrasound-Assisted Deposition of Sepia Melanin and Multiwalled Carbon Nanotubes on Carbon Cloth: Toward Sustainable Surface Engineering for Flexible Supercapacitors. Advanced Sustainable Systems, 202400302 (11 pages). Lien externe

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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

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

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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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