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Synthesis and characterization of gold nanotubeanowire-polyurethane composite based on castor oil and polyethylene glycol

机译:基于蓖麻油和聚乙二醇的金纳米管/纳米线-聚氨酯复合材料的合成与表征

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摘要

Gold nanotubesanowires (GNT/NW were synthesized by using the template-assisted electrodeposition technique and mixed with castor oil-polyethylene glycol based polyurethane (PU) to fabricate porous composite scaffolds for biomedical application. 100 and 50 ppm of GNT/NW were used to synthesize composites. The composite scaffolds were characterized by Fourier transform infrared spectroscopy, dynamic mechanical thermal analysis, differential scanning calorimetry, and scanning electron microscopy. Cell attachment on polyurethane-GNT/NW composites was investigated using fat-derived mesenchymal stem cells. Addition of 50 or 100 ppm GNT/NW had significant effects on thermal, mechanical, and cell attachment of polyurethane. Higher crosslink density and better cell attachment and proliferation were observed in polyurethane containing 50 ppm GNT/ NW. The results revealed that GNT/NW formed hydrogen bonding with the polyurethane matrix and improved the thermomechanical properties of nanocomposites. Compared with pure PU, better cellular attachment on polyurethane-GNT/NW composites was observed resulting from the improved surface properties of composites.
机译:金纳米管/纳米线(GNT / NW)采用模板辅助电沉积技术合成,并与蓖麻油-聚乙二醇基聚氨酯(PU)混合制成生物医学应用的多孔复合支架,分别使用100和50 ppm的GNT / NW。通过傅立叶变换红外光谱,动态力学热分析,差示扫描量热法和扫描电子显微镜对复合支架进行表征,并利用脂肪来源的间充质干细胞研究了聚氨酯-GNT / NW复合材料的细胞粘附。 50或100 ppm GNT / NW对聚氨酯的热,机械和细胞黏附有显着影响,在含有50 ppm GNT / NW的聚氨酯中观察到更高的交联密度以及更好的细胞黏附和增殖,结果表明,GNT / NW形成氢与聚氨酯基质的键合并改善了纳米复合材料的热机械性能特斯与纯PU相比,由于复合材料表面性能的改善,在聚氨酯-GNT / NW复合材料上观察到了更好的多孔连接。

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