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Article

Suspended Multifunctional Nanocellulose as Additive for Mortars

by
Maria Vittoria Diamanti
1,*,
Cristina Tedeschi
2,
Mariagiovanna Taccia
2,
Giangiacomo Torri
3,
Nicolò Massironi
1,
Chiara Tognoli
1 and
Elena Vismara
1,*
1
Department of Chemistry, Materials and Chemical Engineering “Giulio Natta”, Politecnico di Milano, 20131 Milan, Italy
2
Department of Civil and Environmental Engineering, Politecnico di Milano, 20131 Milan, Italy
3
Istituto Scientifico di Chimica e Biochimica “Giuliana Ronzoni”, 20131 Milan, Italy
*
Authors to whom correspondence should be addressed.
Nanomaterials 2022, 12(7), 1093; https://doi.org/10.3390/nano12071093
Submission received: 27 February 2022 / Revised: 22 March 2022 / Accepted: 23 March 2022 / Published: 26 March 2022
(This article belongs to the Special Issue Cellulose Nanocrystals)

Abstract

Cellulose derivatives have found significant applications in composite materials, mainly because of the increased mechanical performance they ensure. When added to cement-based materials, either in the form of nanocrystals, nanofibrils or micro/nanofibers, cellulose acts on the mixture with fresh and hardened properties, affecting rheology, shrinkage, hydration, and the resulting mechanical properties, microstructure, and durability. Commercial cotton wool was selected as starting material to produce multifunctional nanocelluloses to test as additives for mortars. Cotton wool was oxidized to oxidized nanocellulose (ONC), a charged nanocellulose capable of electrostatic interaction, merging cellulose and nanoparticles properties. Oxidized nanocellulose (ONC) was further functionalized by a radical-based mechanism with glycidyl methacrylate (GMA) and with a mixture of GMA and the crosslinking agent ethylene glycol dimethacrylate (EGDMA) affording ONC-GMA and ONC-GMA-EGDMA, both multifunctional-charged nanocellulose merging cellulose and bound acrylates properties. In this work, only ONC was found to be properly suitable for suspension and addition to a commercial mortar to assess the variation in mechanical properties and water-mortar interactions as a consequence of the modified microstructure obtained. The addition of oxidized nanocellulose caused an alteration of mortar porosity, with a decreased percentage of porosity and pore size distribution shifted towards smaller pores, with a consequent increase in compressive resistance, decrease in water absorption coefficient, and increased percentage of micropores present in the material, indicating a potential improvement in mortar durability.
Keywords: oxidized nanocellulose; TEMPO; acrylates; suspension; mortar; mechanical resistance; water absorption oxidized nanocellulose; TEMPO; acrylates; suspension; mortar; mechanical resistance; water absorption

Share and Cite

MDPI and ACS Style

Diamanti, M.V.; Tedeschi, C.; Taccia, M.; Torri, G.; Massironi, N.; Tognoli, C.; Vismara, E. Suspended Multifunctional Nanocellulose as Additive for Mortars. Nanomaterials 2022, 12, 1093. https://doi.org/10.3390/nano12071093

AMA Style

Diamanti MV, Tedeschi C, Taccia M, Torri G, Massironi N, Tognoli C, Vismara E. Suspended Multifunctional Nanocellulose as Additive for Mortars. Nanomaterials. 2022; 12(7):1093. https://doi.org/10.3390/nano12071093

Chicago/Turabian Style

Diamanti, Maria Vittoria, Cristina Tedeschi, Mariagiovanna Taccia, Giangiacomo Torri, Nicolò Massironi, Chiara Tognoli, and Elena Vismara. 2022. "Suspended Multifunctional Nanocellulose as Additive for Mortars" Nanomaterials 12, no. 7: 1093. https://doi.org/10.3390/nano12071093

APA Style

Diamanti, M. V., Tedeschi, C., Taccia, M., Torri, G., Massironi, N., Tognoli, C., & Vismara, E. (2022). Suspended Multifunctional Nanocellulose as Additive for Mortars. Nanomaterials, 12(7), 1093. https://doi.org/10.3390/nano12071093

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