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Preparation of Three-Dimensional Photonic Crystals of Zirconia by Electrodeposition in a Colloidal Crystals Template

机译:胶体晶体模板中电沉积制备氧化锆三维光子晶体

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Three-dimensional photonic crystals of zirconia were prepared by electrodeposition in a colloidal crystals template following calcination at 500 °C. Scanning electron microscopy, thermogravimetric analysis, X-ray diffraction, and reflectance spectroscopy were employed to characterize the photonic crystals of zirconia. It was found that hydrated zirconium ions could penetrate the colloidal crystals template and reach the substrate easily by electrodeposition, which resulted in stronger bonding between the substrate and the as-deposited membrane. Moreover, the electrodeposited membrane had low water content, leading to a low amount of shrinkage during calcination. Both these properties could suppress detachment from the substrate upon removal of the colloidal crystals template. Therefore, the three-dimensional photonic crystals of zirconia synthesized in this study exhibited very good preservation of the ordered structures of the colloidal crystals template with a high density. A peak of reflection higher than 70% was formed in the reflectance spectrum because of the strong diffraction of the ordered structures.
机译:在500℃下煅烧后,通过在胶体晶体模板中进行电沉积来制备氧化锆的三维光子晶体。扫描电子显微镜,热重分析,X射线衍射和反射光谱被用来表征氧化锆的光子晶体。结果发现,水合锆离子可以通过电沉积而渗透到胶体晶体模板中,并易于到达基底,从而使基底与沉积膜之间的结合更牢固。此外,电沉积膜的水含量低,导致煅烧期间的收缩率低。当去除胶体晶体模板时,这两个特性都可以抑制从基底的脱离。因此,在这项研究中合成的氧化锆的三维光子晶体表现出很好的以高密度保存了胶体晶体模板的有序结构。由于有序结构的强衍射,在反射光谱中形成了高于70%的反射峰。

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