Graphene and graphene oxide functionalisation with silanes for advanced dispersion and reinforcement of PMMA-based bone cements.


Journal

Materials science & engineering. C, Materials for biological applications
ISSN: 1873-0191
Titre abrégé: Mater Sci Eng C Mater Biol Appl
Pays: Netherlands
ID NLM: 101484109

Informations de publication

Date de publication:
Nov 2019
Historique:
received: 01 02 2018
revised: 13 06 2019
accepted: 03 07 2019
entrez: 11 9 2019
pubmed: 11 9 2019
medline: 29 1 2020
Statut: ppublish

Résumé

The reinforcement of PMMA bone cements using carbon based nanomaterials has demonstrated to be a potential solution to their poor mechanical properties. The achievement of an optimal dispersion of the nanoparticles within the polymeric matrix is a crucial but not easy stage in the production of high-quality reinforced materials. In this work, a useful route for the graphene (G) functionalisation, via silanisation with (3-methacryloxypropyl) trimethoxy silane (MPS), has been developed, providing a remarkable enhancement in dispersibility and mechanical properties. With the purpose to define the critical graphene surface oxidation parameters for an optimal silanisation, different routes were thoroughly analysed using infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM). The results showed that the silanisation significantly improved the G dispersibility: whereas the pristine G dispersion fell down within the first 24 h, the silanised G showed an adequate stability after 5 days. Additionally, this improved dispersibility produced a notable increase in the mechanical properties of the G-reinforced bone cements: in comparison with the pristine G, the compression and bending strength of silanised G increased by 12% and by 13.7% respectively and the fracture toughness by 28%. These results provide very useful information on the relevance that the characteristics of the superficial oxidation of graphene have on the effectiveness of the silanisation process, besides an interesting functionalisation procedure for advanced dispersion and reinforcement of G-PMMA bone cements.

Identifiants

pubmed: 31499982
pii: S0928-4931(18)30332-1
doi: 10.1016/j.msec.2019.109946
pii:
doi:

Substances chimiques

Bone Cements 0
Silanes 0
graphene oxide 0
Graphite 7782-42-5
Polymethyl Methacrylate 9011-14-7
trimethoxysilane V1J39XPF91

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

109946

Informations de copyright

Copyright © 2019 Elsevier B.V. All rights reserved.

Auteurs

E Paz (E)

Institute for Research in Technology/Mechanical Engineering Dept., Universidad Pontificia Comillas, Alberto Aguilera 25, 28015 Madrid, Spain. Electronic address: eva.paz@comillas.edu.

Y Ballesteros (Y)

Institute for Research in Technology/Mechanical Engineering Dept., Universidad Pontificia Comillas, Alberto Aguilera 25, 28015 Madrid, Spain.

F Forriol (F)

School of Medicine, Universidad San Pablo CEU, Urb. Monteprincipe, 28925 Alcorcon, Madrid, Spain.

N J Dunne (NJ)

Centre for Medical Engineering Research, School of Mechanical and Manufacturing Engineering, Dublin City University, Stokes Building, Collins Avenue, Dublin 9, Ireland; School of Mechanical and Manufacturing Engineering, Dublin City University, Stokes Building, Collins Avenue, Dublin 9, Ireland; School of Pharmacy, Queen's University Belfast, 97 Lisburn Road, Belfast BT9 7BL, United Kingdom; Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin 2, Ireland. Electronic address: nicholas.dunne@dcu.ie.

J C Del Real (JC)

Institute for Research in Technology/Mechanical Engineering Dept., Universidad Pontificia Comillas, Alberto Aguilera 25, 28015 Madrid, Spain. Electronic address: delreal@comillas.edu.

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Classifications MeSH