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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Polymorphous ZnO complex architectures: selective synthesis, mechanism, surface area and Zn-polar plane-codetermining antibacterial activity
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Polymorphous ZnO complex architectures: selective synthesis, mechanism, surface area and Zn-polar plane-codetermining antibacterial activity

机译:ZnO多晶复合物结构:选择性合成,机理,表面积和Zn-极性平面共编码,确定抗菌活性

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Complex ZnO architectures with tunable morphologies and structures were obtained by modulating only the base type and molar ratio of base to Zn~(2+) (a) using an easy one-pot hydrothermal approach without any template or organic additive. Characterizations by X-ray diffraction, Fourier-transform infrared spectrometry, scanning electron microscopy, transmission electron microscopy, and surface area analysis were performed. The effect of the base type and base/Zn~(2+) molar ratio on the morphology and corresponding mechanism were determined. The correlations between the microstructure and properties were established. The antibacterial effect of the ZnO samples was probably due to a combination of variable factors. Better antibacterial activity is derived from more effective antibacterial surfaces, which are mainly associated with the specific surface area and Zn-polar plane. Thus, flower-like architectures with larger specific surface areas and more highly exposed (0001) Zn-polar surfaces outwards are promising structures for ZnO antibacterial agents. This work provides a guide for devising and synthesizing highly efficient antibacterial materials.
机译:通过使用简单的一锅水热法,无需任何模板或有机添加剂,仅调节碱的类型和碱对Zn〜(2+)(a)的摩尔比,即可得到具有可调节形态和结构的复杂ZnO体系。通过X射线衍射,傅立叶变换红外光谱,扫描电子显微镜,透射电子显微镜和表面积分析进行表征。确定了碱类型和碱/ Zn〜(2+)摩尔比对形态和相应机理的影响。建立了微观结构与性能之间的相关性。 ZnO样品的抗菌作用可能是由于多种因素的综合作用。更好的抗菌活性源自更有效的抗菌表面,这些表面主要与比表面积和Zn极性平面有关。因此,具有较大比表面积和向外更多暴露(0001)的Zn-极性表面的花状结构是ZnO抗菌剂的有前途的结构。这项工作为设计和合成高效抗菌材料提供了指南。

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