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Fabrication of silica/zinc oxide core-shell colloidal photonic crystals

机译:二氧化硅/氧化锌核-壳胶体光子晶体的制备

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We have fabricated three-dimensional ZnO photonic crystals by the self-assembly of SiO_2/ZnO core-shell microspheres of diameter 180-220 nm by means of a vertical deposition method. The organized crystals adopt a uniform close-packed hexagonal structure with long-range order and a high filling fraction. They exhibit strong partial photonic band gaps at 565-688 nm in the transmission spectrum and a broadened band edge emission at 383 nm in the photoluminescence spectrum. For comparison with these ZnO photonic crystals, we have also prepared pure silica crystals of the same dimensions. The photonic band gaps of the former have been found to be shifted to a longer wavelength by about 200 nm compared to those of the latter as a result of the higher refractive index of ZnO. This approach provides an efficient, economical alternative means of obtaining other, more complicated photonic crystals.
机译:我们通过垂直沉积方法通过自组装直径为180-220 nm的SiO_2 / ZnO核壳微球,制备了三维ZnO光子晶体。有组织的晶体采用均匀的密堆积六角形结构,具有长程有序和高填充率。它们在透射光谱中在565-688 nm处显示出较强的部分光子带隙,在光致发光光谱中在383 nm处显示出较宽的能带边缘发射。为了与这些ZnO光子晶体进行比较,我们还准备了相同尺寸的纯二氧化硅晶体。由于ZnO的较高折射率,已经发现前者的光子带隙比后者的光子带隙移动了更长的波长约200nm。这种方法为获得其他更复杂的光子晶体提供了一种有效,经济的替代方法。

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