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Silica photonic crystals with quasi-full band gap in the visible region prepared in ethanol
作者姓名:ZHANG Hui  WANG Xidong  ZHAO Xiaofeng  LI Wenchao and TANG Qing
作者单位:1. University of Science and Technology Beijing,Beijing 100083,China; 2. Institute of Process Engineering,Chinese Academy of Sciences,Beijing 100080,China
基金项目:Supported by the National Natural Science Foundation of China (Grant No.59974026)
摘    要:Monodisperse silica spheres of 252 nm with a standard deviation of 5.7% are prepared by Stber method. By compari-son of both of media, ethanol instead of water is used to assemble opal, and the artiflcial opal has been prepared by the sedimentation inethanol of silica spheres. The structure of the opal prepared has been examined and discussed. The results show that the artificial opal hasa structure similar to the face-centered cubic (fcc) type packed system with silica spheres. Transmission measurements of the artificial opalhave been conducted, which shows that the artificial opal is quasi-full band gap silica photonic crystals in the visible region.


Silica photonic crystals with quasi-full band gap in the visible region prepared in ethanol
ZHANG Hui,WANG Xidong,ZHAO Xiaofeng,LI Wenchao and TANG Qing.Silica photonic crystals with quasi-full band gap in the visible region prepared in ethanol[J].Progress in Natural Science,2003,13(9).
Authors:ZHANG Hui  Wang Xidong  Zhao Xiaofeng  LI Wenchao  TANG Qing
Abstract:Monodisperse silica spheres of 252 nm with a standard deviation of 5.7% are prepared by Stober method. By comparison of both of media, ethanol instead of water is used to assemble opal, and the artificial opal has been prepared by the sedimentation in ethanol of silica spheres. The structure of the opal prepared has been examined and discussed. The results show that the artificial opal has a structure similar to the face-centered cubic (fcc) type packed system with silica spheres. Transmission measurements of the artificial opal have been conducted, which shows that the artificial opal is quasi-full band gap silica photonic crystals in the visible region.
Keywords:photonic crystals  artificial opal  quasi-full band gap  
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