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Hierarchical Ag Nanostructures Fabricated from Silver Coordination Polymers for Antibacterial Surface

机译:由银配位聚合物制成的用于抗菌表面的多层银纳米结构

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摘要

A hierarchical silver nanostructure with improved antibacterial property was fabricated utilizing silver coordination polymer. Octadecanethiolate–silver polymer was synthesized to have a layered structure and was coated on silicon wafer by drop-casting method utilizing hydrophobic–hydrophobic interaction. Thus, the silver coordination polymer was calcined under reductive condition to produce zero-valent silver with a hierarchical nanostructure. X-ray diffraction patterns revealed that layered silver coordination polymer successfully transformed to hexagonal silver upon calcination. According to scanning electron and atomic force microscopy, silver coordination polymer with ~145.5 nm size was homogeneously coated on the surface before calcination, and it evolved micrometer-sized lumps and grooves which were composed of ~58.8 nm sized Ag nanoparticles. The hierarchical structure—micrometer lump/groove consisting of Ag nanoparticles—would be advantageous to kill bacteria; micrometer-grooves provide physical condition (pocket for bacteria capture) and the Ag nanoparticles from the neighboring lump endow chemical condition (antibacterial property of released Ag+). The antibacterial activity test on Escherichia coli via colony forming inhibitory assay indeed exhibited an improved antibacterial activity of hierarchical Ag nanostructure compared with the surface simply coated with Ag nanoparticles. From the line profile of atomic force microscopy, the bacterium trapped in the hierarchical Ag nanostructure was shown to interact intimately with Ag surface.
机译:利用银配位聚合物制备了具有改善的抗菌性能的分级银纳米结构。合成十八烷硫醇盐-银聚合物具有层状结构,并利用疏水-疏水相互作用通过滴铸法将其涂覆在硅片上。因此,将银配位聚合物在还原条件下煅烧以产生具有分级纳米结构的零价银。 X射线衍射图表明,层状银配位聚合物在煅烧后成功转变为六方银。根据扫描电子和原子力显微镜,在煅烧之前,将〜145.5 nm尺寸的银配位聚合物均匀地涂覆在表面上,并演化出由〜58.8 nm尺寸的Ag纳米颗粒组成的微米级的团块和沟槽。由银纳米颗粒组成的微米级块/凹槽的分层结构将有利于杀死细菌。微米级的槽提供了物理条件(用于捕获细菌的口袋),而邻近的块状化学条件(释放的Ag + 的抗菌特性)提供了Ag纳米颗粒。与通过银纳米颗粒简单涂覆的表面相比,通过菌落形成抑制测定法对大肠杆菌的抗菌活性测试确实显示出改进的分级银纳米结构的抗菌活性。从原子力显微镜的线轮廓来看,困在分级Ag纳米结构中的细菌显示出与Ag表面紧密相互作用。

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