In this study, a combination of reverse microemulsion and hydrothermal techniques were used to synthesize HA. A hydrothermal method was used to synthesize HA/TiO/CNT nanocomposite powders. Cold and hot isostatic pressing techniques were used to fabricate tablet-shaped samples. To investigate the biocompatibility and tribo-mechanical properties of HA/TiO and HA/TiO/CNTs, four samples were prepared with different percentages of CNTs, namely, HA/TiO (S0), HA/TiO/CNT (S1.0), HA/TiO/CNT (S2.0), and HA/TiO/CNT (S3.0). The microstructure and morphology of the HA/TiO/CNTs were characterized by transmission electron microscopy, scanning electron microscopy, energy-dispersive X-ray spectroscopy, and X-ray diffraction. Hardness test results show that S3.0 displayed the highest surface hardness (285 HV) compared to other samples. The wear rate of HA/TiO/CNT with the highest CNT content showed a decrease compared with those of the other samples. The results from nanoindentation tests showed that Young's modulus of the S3.0 sample was 58.1% greater than that of the S0 sample. Furthermore, the human MDA-MB-231 cell line demonstrated good binding to the surface of the samples in the in-vitro biocompatibility evaluation of the HA/TiO/CNT composites.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7820248 | PMC |
http://dx.doi.org/10.1038/s41598-021-81187-7 | DOI Listing |
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