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Degradation enhancement of methylene blue on ZnO nanocombs synthesized by thermal evaporation technique

机译:热蒸发技术合成ZnO纳米瘤上亚甲基蓝的降解增强

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Different zinc oxide (ZnO) morphologies were synthesized via a thermal evaporation-like technique without a catalyst introduction. The morphology of ZnO has been controlled by varying the evaporation pressure of ambient air. X-ray diffractometer and field emission scanning electron microscope were used for crystallinity and morphology investigation, respectively. The X-ray data confirmed the purity and crystallinity of the as-prepared ZnO structure. A variation of the pressure led to different morphologies of ZnO nanostructure such as nanocombs and nanorods. The influence of these different morphologies on the photocatalytic activity was performed on a water wasted methylene blue. The results showed the geometry of one-dimensional nanostructures deposited at different pressures strongly controls the photocatalytic activity of ZnO. The most suitable photocatalytic performance was recorded for ZnO deposited at 0.15Torr, which showed one-side nanocombs of long nails.
机译:通过催化剂引入,通过热蒸发样技术合成不同的氧化锌(ZnO)形态。通过改变环境空气的蒸发压力来控制ZnO的形态。 X射线衍射仪和场发射扫描电子显微镜分别用于结晶度和形态调查。 X射线数据证实了制备的ZnO结构的纯度和结晶度。压力的变化导致ZnO纳米结构的不同形态,例如纳米毫米和纳米码。在浪费亚甲基蓝色的水中进行这些不同形态对光催化活性的影响。结果表明,在不同压力下沉积的一维纳米结构的几何形状强烈控制ZnO的光催化活性。最适合的光催化性能被记录为沉积在0.15torr的ZnO,其显示长钉的一侧纳米粉末。

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