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Documents publiés en "2018"

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Nombre de documents: 18

A

Abriat, C., Daigle, F., Virgilio, N., & Heuzey, M.-C. (avril 2018). Interfacial Rheology of Bacterial Biofilms [Présentation]. Dans Annual European Rheology Conference (AERC 2018), Sorrento, Italy. Non disponible

Abriat, C., Daigle, F., Virgilio, N., & Heuzey, M.-C. (octobre 2018). Real-time characterization of microbiological and mechanical properties of bacillus licheniformis and pseudomonas fluorescens dual-species biofilms [Affiche]. 8th ASM Conference on Biofilms, Washington, D.C.. Non disponible

Abriat, C., Heuzey, M.-C., Virgilio, N., & Daigle, F. (octobre 2018). Characterization of dual-species biofilm of bacillus licheniformis and pseudomonas fluorescens at the air-liquid interface [Présentation]. Dans 90th Annual Meeting of the Society of Rheology, Houston, Texas. Non disponible

Abriat, C., Heuzey, M.-C., Virgilio, N., & Daigle, F. (juin 2018). Rheology of dual-species biofilms at the air-liquid interface [Affiche]. CREPEC Annual Student Colloquium, Montréal, Québec. Non disponible

Ardila, N., Ajji, Z., Heuzey, M.-C., & Ajji, A. (2018). Chitosan electrospraying: Mapping of process stability and micro and nanoparticle formation. Journal of Aerosol Science, 126, 85-98. Lien externe

Arkoun, M., Ardila, N., Heuzey, M.-C., & Ajji, A. (2018). Chitosan-based structures/coatings with antibacterial properties. Dans Handbook of antimicrobial coatings (357-389). Lien externe

Arkoun, M., Daigle, F., Holley, R. A., Heuzey, M.-C., & Ajji, A. (2018). Chitosan-based nanofibers as bioactive meat packaging materials. Packaging Technology and Science, 31(4), 185-195. Lien externe

B

Beuguel, Q., Bagheriasl, D., Bruel, C., Tavares, J. R., Carreau, P., & Heuzey, M.-C. (2018). Comportement rhéologique à l'état fondu de nanocomposites à base de nanocristaux de cellulose (CNCs). Rhéologie (34), 10-16. Disponible

Beuguel, Q., Tavares, J. R., Carreau, P., & Heuzey, M.-C. (2018). Rheological behavior of cellulose nanocrystal suspensions in polyethylene glycol. Journal of Rheology, 62(2), 607-618. Disponible

Beuguel, Q., Tavares, J. R., Carreau, P., & Heuzey, M.-C. (2018). Ultrasonication of spray- and freeze-dried cellulose nanocrystals in water. Journal of Colloid and Interface Science, 516, 23-33. Disponible

Bruel, C., Beuguel, Q., Tavares, J. R., Carreau, P., & Heuzey, M.-C. (2018). The apparent structural hydrophobicity of cellulose nanocrystals. J-FOR The Journal of Science and Technology for Forest Products and Processes, 7(4), 13-23. Disponible

S

Safdari, F., Bagheriasl, D., Carreau, P., Heuzey, M.-C., & Kamal, M. R. (2018). Rheological, mechanical, and thermal properties of polylactide/cellulose nanofiber biocomposites. Polymer Composites, 39(5), 1752-1762. Lien externe

Sojoudiasli, H., Heuzey, M.-C., & Carreau, P. (2018). Mechanical and morphological properties of cellulose nanocrystal-polypropylene composites. Polymer Composites, 39(10), 3605-3617. Lien externe

W

Wang, C.-S., Virgilio, N., Wood-Adams, P. M., & Heuzey, M.-C. (2018). A gelation mechanism for gelatin/polysaccharide aqueous mixtures. Food Hydrocolloids, 79, 462-472. Lien externe

Wang, C.-S., Virgilio, N., Wood-Adams, P. M., & Heuzey, M.-C. (2018). Protein/polysaccharide-based hydrogels prepared by vapor-induced phase separation. Macromolecular Chemistry and Physics, 219(7), 1700504 (6 pages). Lien externe

Wu, Q., Therriault, D., & Heuzey, M.-C. (2018). Processing and properties of chitosan inks for 3D printing of hydrogel microstructures. ACS Biomaterials Science & Engineering, 4(7), 2643-2652. Lien externe

Wu, Q., Zou, S., Gosselin, F., Therriault, D., & Heuzey, M.-C. (2018). 3D printing of a self-healing nanocomposite for stretchable sensors. Journal of Materials Chemistry C, 6(45), 12180-12186. Lien externe

Z

Zakeri, B., Khandal, D., Beuguel, Q., Riedl, B., Tavares, J. R., Carreau, P., & Heuzey, M.-C. (2018). Non-covalent surface modification of cellulose nanocrystals by polyethyleneimine. J-FOR The Journal of Science and Technology for Forest Products and Processes, 7(4), 6-12. Disponible

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