Comparison between hydroxyapatite/soapstone and hydroxyapatite/reduced graphene oxide composite coatings: Synthesis and property improvement

Citation:

Daniel Nilson Nunes Nicomedes, Laureana Moreira Mota, Rebecca Vasconcellos, Nathanael Vieira Medrado, Michelle de Oliveira, Érika Costa de Alvarenga, Karyne R.C. Juste, Ariete Righi, Sara Matte Manhabosco, Guilherme Jorge Brigolini Silva, Fernando Gabriel S. Araújo, Alan Barros de Oliveira, Ronaldo Junio Campos Batista, Jaqueline Santos dos Soares, and Taíse Matte Manhabosco. 2021. “Comparison between hydroxyapatite/soapstone and hydroxyapatite/reduced graphene oxide composite coatings: Synthesis and property improvement.” Journal of the Mechanical Behavior of Biomedical Materials, 121, Pp. 104618.

Abstract:

Economic viability and eco-friendliness are important characteristics that make implants available to the population in a sustainable way. In this work, we evaluate the performance of a low-cost, widely available, and eco-friendly material (talc from soapstone) relative to reduced graphene oxide as reinforcement to brittle hydroxyapatite coatings. We employ a low-cost and straightforward technique, electrodeposition, to deposit the composite coatings on the titanium substrate. Corrosion, wear, and biocompatibility tests indicate that the reduced graphene oxide can be effectively replaced by talc without reducing the mechanical, anticorrosion, and biocompatible composite coatings properties. Our results indicate that talc from soapstone is a promising material for biomedical applications.