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Solvothermal synthesis of 3D photonic crystals based on ZnS/opal system

机译:基于ZnS /蛋白石系统的溶剂热合成3D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. SEM images show that the silica spheres exhibit a well-ordered arrangement and the ZnS nanocrystals infiltrate within the opal templates by heterogeneous nucleation and growth processing, 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 easy-to-handle and efficient route to obtain high performance photonic crystal structures. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们通过自组装和溶剂热方法制备了由渗透有ZnS半导体纳米晶体的人造蛋白石组成的光子晶体。 SEM图像显示二氧化硅球排列整齐,并且ZnS纳米晶体通过异质成核和生长过程渗入蛋白石模板中,并且合成后的ZnS纳米晶体从X射线衍射图中显示出立方相。此外,还分别通过透射光谱研究了具有不同ZnS填充率的渗透蛋白石的光学性质。建议通过控制ZnS的渗透率可以容易地设计阻带的位置。这些结果证明了获得高性能光子晶体结构的简便方法和有效途径。 (C)2004 Elsevier B.V.保留所有权利。

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