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Documents dont l'auteur est "Malinge, Alexandre"

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Nombre de documents: 9

Thériault, P.-L., Humeniuk, H. V., He, Z., Juteau, G., Malinge, A., Perepichka, D. F., & Kéna-Cohen, S. (2026). Molecular Engineering for Enhanced Second‐Order Nonlinear Response in Spontaneously‐Oriented Evaporated Organic Films. Advanced Optical Materials. Lien externe

Raj, A. M., Yao, C., Muthuperumal, G. B., Hu, L., Malinge, A., Frémont, M., Cambe, C., Ortiz Rodriguez, O., Porlier, S., & Skene, W. G. (2024). The Dual‐Role of Benzothiadiazole Fluorophores for Enabling Electrofluorochromic and Electrochromic Devices. ChemPlusChem, 28 pages. Disponible

Thériault, P.-L., Malinge, A., Humeniuk, H. V., Bourbonnais-Sureault, D., Juteau, G., Martel, R., Perepichka, D. F., & Kéna-Cohen, S. (2024). Spontaneously-Oriented Evaporated Organic Semiconductor Thin Films for Second-Order Nonlinear Photonics. ACS Photonics. Lien externe

Malinge, A., Kumar, S., Chen, D., Zysman-Colman, E., & Kéna-Cohen, S. (2024). The heavy atom effect in halogenated mCP and its influence on the efficiency of the thermally activated delayed fluorescence of dopant molecules (dataset) [Ensemble de données]. Lien externe

Malinge, A., Kumar, S., Chen, D., Zysman-Colman, E., & Kéna-Cohen, S. (2024). Heavy atom effect in halogenated mCP and its influence on the efficiency of the thermally activated delayed fluorescence of dopant molecules. The Journal of Physical Chemistry C, 128(3), 1122-1130. Disponible

Shahalizad, A., Malinge, A., Hu, L., Laflamme, G., Haeberlé, L., Myers, D. M., Mao, J., Skene, W. G., & Kéna-Cohen, S. (2021). Efficient Solution-Processed Hyperfluorescent OLEDs with Spectrally Narrow Emission at 840 nm. Advanced Functional Materials, 31(1), 2007119 (8 pages). Lien externe

Mao, J., Ortiz, O., Wang, J., Malinge, A., Badia, A., & Kéna-Cohen, S. (2020). Langmuir-Blodgett fabrication of large-area black phosphorus-C60thin films and heterojunction photodetectors. Nanoscale, 12(38), 19814-19823. Lien externe

Malinge, A. (2019). Nouveaux matériaux fluorescents pour diodes électroluminescentes organiques (OLEDs) émettant dans le proche infrarouge [Mémoire de maîtrise, Polytechnique Montréal]. Disponible

Brodeur, J., Hu, L., Malinge, A., Eizner, E., Skene, W. G., & Kéna-Cohen, S. (2019). Highly Efficient and Spectrally Narrow Near-Infrared Fluorescent OLEDs Using a TADF-Sensitized Cyanine Dye. Advanced Optical Materials, 7(22), 7 pages. Lien externe

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