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Graphene oxide/poly(ethylene glycol)/chitosan gel with slow-release lubrication applied on textured surface

机译:石墨烯氧化物/聚(乙二醇)/壳聚糖凝胶,施加在纹理表面上的慢释润滑

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摘要

Graphene oxide/poly(ethylene glycol) (GO/PEG) composites that have biocompatibility and biodegradability properties have been prepared to improve the lubrication of artificial joints, but they would be rapidly degraded and absorbed by the human body if injected. To prolong the lubrication effect, GO/PEG lubricants were mixed into a chitosan (CS) sol, and then the GO/PEG/CS sol was added to the dimpled texture of a Co-Cr-Mo alloy and transformed into a gel to slowly release GO/PEG lubricants. The results of friction experiments showed that the average friction coefficient of the slow-release solution is below 0.025, especially when under pressure, and the gel in the texture also has a good lubrication effect. Meanwhile, the FTIR and UV-vis of the slow-release solution indicated that it is likely to contain GO, PEG, and CS, which are associated with each other via hydrogen bonds and may form a particular structure, leading to good slow-release lubrication. (C) 2017 Wiley Periodicals, Inc.
机译:已经制备了具有生物相容性和生物降解性性质的石墨烯氧化物/聚(乙二醇)(GO / PEG)复合材料以改善人工关节的润滑,但如果注射,它们将被人体快速降解和吸收。为了延长润滑效果,将GO / PEG润滑剂混合到壳聚糖(Cs)溶胶中,然后将GO / PEG / CS溶胶加入到CO-CR-MO合金的凹陷纹理中,然后转化成凝胶以缓慢释放Go / PEG润滑剂。摩擦实验结果表明,缓释溶液的平均摩擦系数低于0.025,特别是在压力下,纹理中的凝胶也具有良好的润滑效果。同时,慢释放溶液的FTIR和UV-vis表明它可能含有Go,PEG和Cs,其通过氢键彼此相关,并且可以形成特定的结构,导致良好的缓慢释放润滑。 (c)2017 Wiley期刊,Inc。

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