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Graphene oxide assisted synthesis of GaN nanostructures for reducing cell adhesion

机译:石墨烯氧化物辅助合成氮化镓减少细胞粘附的纳米结构

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摘要

We report a general approach for the synthesis of large-scale gallium nitride (GaN) nanostructures by the graphene oxide (GO) assisted chemical vapor deposition (CVD) method. A modulation effect of GaN nanostructures on cell adhesion has been observed. The morphology of the GaN surface can be controlled by GO concentrations. This approach, which is based on the predictable choice of the ratio of GO to catalysts, can be readily extended to the synthesis of other materials with controllable nanostructures. Cell studies show that GaN nanostructures reduced cell adhesion significantly compared to GaN flat surfaces. The cell-repelling property is related to the nanostructure and surface wettability. These observations of the modulation effect on cell behaviors suggest new opportunities for novel GaN nanomaterial-based biomedical devices. We believe that potential applications will emerge in the biomedical and biotechnological fields.
机译:我们报告一个通用的合成方法大型氮化镓(GaN)纳米结构通过氧化石墨烯(去)辅助化学汽相淀积(CVD)方法。氮化镓纳米结构对细胞粘附的影响被观察到。可以控制的浓度。方法是基于预测的选择的比例去催化剂,可以容易扩展到其他的合成与可控纳米结构材料。研究表明,氮化镓纳米结构细胞减少附着力显著GaN相比持平表面。纳米结构和表面润湿性能。这些观察的调制作用细胞行为提出新的机遇小说GaN nanomaterial-based生物医学设备。我们认为,潜在的应用程序出现在生物医学和生物技术字段。

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