<  Retour au portail Polytechnique Montréal

Orienting Cellulose Nanocrystal Functionalities Tunes the Wettability of Water-Cast Films

Charles Bruel, Salomé Queffeulou, Pierre Carreau, Jason Robert Tavares et Marie-Claude Heuzey

Article de revue (2020)

Document en libre accès dans PolyPublie
[img]
Affichage préliminaire
Libre accès au plein texte de ce document
Version finale avant publication
Conditions d'utilisation: Tous droits réservés
Télécharger (5MB)
Afficher le résumé
Cacher le résumé

Abstract

Cellulose nanocrystal (CNC)-based materials display apparently erratic wetting behaviors with contact angle (CA) variations as large as 30° from sample to sample. This work hypothesizes that it is the orientation of CNC amphiphilic functionalities at the interface with air that causes the variability in CA. By exploiting relationships with the Hansen solubility parameter theory, a set of surface tension parameters is proposed for both the polar and the non-polar surfaces of cellulose Iβ nanocrystals. These coefficients elucidate the wettability of CNC materials by establishing a correlation between the wetting properties of the air/sample interface and its chemical composition in terms of non-polar moieties. Advancing/receding CA experiments suggest that, while spin-coating CNC suspensions yield purely polar films, oven-casting them produces amphiphilic surfaces. We proposed a mechanism where the state of dispersion (individual or agglomerated) in which CNCs reach the air/water interface during casting is the determining factor: while individual nanocrystals find it more stable to orient their non-polar surfaces toward the interface, the aspect ratio of CNC agglomerates favors an orientation of their polar surfaces. This represents the first compelling evidence of CNC orientation at an interface and can be applied to Pickering emulsions and nanocomposites and to the production of CNC materials with tuned wettability.

Mots clés

Interfaces,Liquids,Nanocrystals,Surface tension,Thin films

Sujet(s): 1800 Génie chimique > 1800 Génie chimique
Département: Département de génie chimique
Centre de recherche: CREPEC - Centre de recherche sur les systèmes polymères et composites à haute performance
Organismes subventionnaires: FPInnovations, PRIMA Québec, National Science and Engineering Research Council (NSERC), Fond de Recherche du Québec - Nature et Technologies (FRQNT)
Numéro de subvention: FPI NCC RD001, RDCPJ 490786-15, 208324
URL de PolyPublie: https://publications.polymtl.ca/46990/
Titre de la revue: Langmuir (vol. 36, no 41)
Maison d'édition: American Chemical Society (ACS)
DOI: 10.1021/acs.langmuir.0c01799
URL officielle: https://doi.org/10.1021/acs.langmuir.0c01799
Date du dépôt: 18 avr. 2023 15:00
Dernière modification: 25 sept. 2024 21:18
Citer en APA 7: Bruel, C., Queffeulou, S., Carreau, P., Tavares, J. R., & Heuzey, M.-C. (2020). Orienting Cellulose Nanocrystal Functionalities Tunes the Wettability of Water-Cast Films. Langmuir, 36(41), 12179-12189. https://doi.org/10.1021/acs.langmuir.0c01799

Statistiques

Total des téléchargements à partir de PolyPublie

Téléchargements par année

Provenance des téléchargements

Dimensions

Actions réservées au personnel

Afficher document Afficher document