Multifunctional Medical Grade Resin with Enhanced Mechanical and Antibacterial Properties: The Effect of Copper Nano-Inclusions in Vat Polymerization (VPP) Additive Manufacturing

Author:

Vidakis Nectarios,Petousis MarkosORCID,Papadakis Vassilis M.ORCID,Mountakis NikolaosORCID

Abstract

Vat photopolymerization (VPP) is an additive manufacturing process commonly used in medical applications. This work aims, for the first time in the literature, to extend and enhance the performance of a commercial medical-grade resin for the VPP process, with the development of nanocomposites, using Copper (Cu) nanoparticles as the additive at two different concentrations. The addition of the Cu nanoparticles was expected to enhance the mechanical properties of the resin and to enable biocidal properties on the nanocomposites since Cu is known for its antibacterial performance. The effect of the Cu concentration was investigated. The nanocomposites were prepared with high-shear stirring. Specimens were 3D printed following international standards for mechanical testing. Their thermal and spectroscopic response was also investigated. The morphological characteristics were examined. The antibacterial performance was evaluated with an agar well diffusion screening process. The experimental results were analyzed with statistical modeling tools with two control parameters (three levels each) and eleven response parameters. Cu enhanced the mechanical properties in all cases studied. 0.5 wt.% Cu nanocomposite showed the highest improvement (approximately 11% in tensile and 10% in flexural strength). The antibacterial performance was sufficient against S. aureus and marginal against E. coli.

Publisher

MDPI AG

Subject

Biomedical Engineering,Biomaterials

Reference116 articles.

1. Investigations of the mechanical properties on different print orientations in SLA 3D printed resin;Proc. Inst. Mech. Eng. Part C J. Mech. Eng. Sci.,2020

2. Nanofillers can be used to enhance the thermal conductivity of commercially available SLA resins;Procedia Manuf.,2019

3. Experimental study of strength properties of SLA resins under low and high strain rates;Mech. Mater.,2020

4. Effects of Curing on Photosensitive Resins in SLA Additive Manufacturing;Appl. Mech.,2021

5. Effect of Printing Layer Thickness and Postprinting Conditions on the Flexural Strength and Hardness of a 3D-Printed Resin;Biomed. Res. Int.,2022

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