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Bending Properties, compression Properties, biocompatibility and bioactivity of sulfonated carbon Fibers/PEEK composites with graphene oxide coating

偷看 材料科学 复合材料 石墨烯 生物相容性 涂层 压缩成型 表面改性 氧化物 复合数 聚醚醚酮 聚合物 化学工程 纳米技术 工程类 冶金 模具
作者
Yadan Li,Hui Jia,Xiaohua Cui,Wen Qin,Shengnan Qin,Yang Wu,Mingyu Bai,Liu Xiaqing,Fan Feng,Jing Ma,Ying Li
出处
期刊:Applied Surface Science [Elsevier BV]
卷期号:575: 151774-151774 被引量:31
标识
DOI:10.1016/j.apsusc.2021.151774
摘要

In order to improve the mechanical properties, carbon fibers (CF) were used as a reinforcer at 25% weight ratio to prepare a CF/PEEK composite through injection molding. Subsequently, to improve the bioactivity of the CF/PEEK composites, samples were modified by sulfonating with 98% concentrated sulfuric acid and then covered with graphene oxide coating (GO). Results: SCF/PEEK (sulfonated CF/PEEK composites) and GO-SCF/PEEK (SCF/PEEK composites with GO coating) were obtained. The mechanical properties, surface characterizations, morphologies, biocompatibility and bioactivity of the prepared composites were systematically investigated. CF/PEEK composites exhibited higher bending and compression strength than pure PEEK. After surface modification, GO-SCF/PEEK composites were equipped with a three-dimensional (3D) porous structure and bioactive graphene oxide coating from the results of SEM and XRD testing. Modified composites were nontoxic in vitro and vivo with evaluating by CCK-8 kit and observing histological sections stained by H&E respectively. What’s more, we uncovered increased apatite deposition in SBF testing, upregulated expression of osteogenic genes by RT-PCR and better osseointegration by micro-CT analysis after surface modification, including ALP, Runx-2, Col-Ⅰ and OC. Conclusion: Sulfonated CF/PEEK composites with graphene oxide coating were favorable as implant materials to repair the bone defects which provided positive reference in terms of future biomedical applications.
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