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Documents avec le centre de recherche "CREPEC - Centre de recherche sur les systèmes polymères et composites à haute performance"

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Nombre de documents à ce niveau: 10.

A

Aïssa, B., Therriault, D., Haddad, E. & Jamroz, W. (2012). Self-Healing Materials Systems: Overview of Major Approaches and Recent Developed Technologies. Advances in Materials Science and Engineering, 2012, p. 1-17.

Ardila, N., Daigle, F., Heuzey, M.-C. & Ajji, A. (2017). Antibacterial activity of neat chitosan powder and flakes. Molecules, 22(1), p. 1-19.

B

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

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

F

Farhanian, D., De Crescenzo, G. & Tavares, J. R. (2018). Large-Scale Encapsulation of Magnetic Iron Oxide Nanoparticles via Syngas Photo-Initiated Chemical Vapor Deposition. Scientific Reports.

Faucheux, P. A., Gosselin, F. P. & Lévesque, M. (2018). Simulating shot peen forming with eigenstrains. Journal of Materials Processing Technology, 254, p. 135-144.

H

Hadjizadeh, A., Savoji, H. & Ajji, A. (2016). A Facile Approach for the Mass Production of Submicro/Micro Poly (Lactic Acid) Fibrous Mats and Their Cytotoxicity Test towards Neural Stem Cells. BioMed Research International, 2016.

L

Labonté, V., Marion, A., Virgilio, N. & Tavares, J. R. (2016). Gas-phase surface engineering of polystyrene beads used to challenge automated particle inspection systems. Industrial & Engineering Chemistry Research, 55(27), p. 7362-7372.

M

Mighri, N., Mao, J., Mighri, F., Ajji, A. & Rouabhia, M. (2015). Chitosan-Coated Collagen Membranes Promote Chondrocyte Adhesion, Growth, and Interleukin-6 Secretion. Materials, 8(11), p. 7673.

R

Raphael, W., Martel, T., Landry, V. & Tavares, J. R. (2018). Surface engineering of wood substrates to impart barrier properties: a photochemical approach. Wood Science and Technology, 52(1), p. 193-207.

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