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Fabricate Photonic Crystals Based on ZnS/opal System via Solvothermal Method

机译:通过溶剂热法制造基于ZnS / OPAL系统的光子晶体

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We made photonic crystals composed of artificial opals infiltrated with ZnS semiconductor nanocrystals by using self-assembly and solvothermal methods. Scanning electron microscopy images show that the silica spheres exhibit a well-ordered arrangement and the ZnS nanocrystals grow homogenously inside the opal matrix and the as-synthesized ZnS nanocrystals reveal a cubic phase from X-ray diffraction pattern. Furthermore, the optical properties of the infiltrated opals with different ZnS filling ratio are also studied by transmission spectroscopy respectively. It is proposed that the position of the stop band can be easily designed by controlling the infiltration ratio of ZnS. These results demonstrate an effective and practical route to obtain high-performance photonic crystal structures.
机译:我们通过使用自组装和溶剂质方法使由用ZnS半导体纳米晶体渗透渗透的人工蛋白石组成的光子晶体。 扫描电子显微镜图像表明,二氧化硅球在蛋白质基质中表现出良好有序的布置,并且ZnS纳米晶体在蛋白石基质内生长,并且由合成的ZnS纳米晶体显示来自X射线衍射图案的立方相。 此外,还通过透射光谱研究了具有不同ZnS填充率的渗透型蛋白的光学性质。 提出通过控制ZnS的渗透比来容易地设计止动槽的位置。 这些结果表明了获得高性能光子晶体结构的有效和实用的途径。

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