This work was financially supported by the Beijing Foundation of Natural Science, China(No. Z012013).()
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Hong-yu Li and Zhi-qiang Chen Department of Chemistry, Anyang Teachers College, Anyang, 等. INVERSE OPALINE STRUCTURE TITANIA PHOTONIC CRYSTALS BY FUNCTIONALLY MODIFIED COLLOIDAL CRYSTALS TEMPLATING[J]. 高分子科学(英文版), 2007,(2):217-220.
Hong-yu Li and Zhi-qiang Chen Department of Chemistry, Anyang Teachers College, Anyang, et al. INVERSE OPALINE STRUCTURE TITANIA PHOTONIC CRYSTALS BY FUNCTIONALLY MODIFIED COLLOIDAL CRYSTALS TEMPLATING[J]. 2007,(2):217-220.
Hong-yu Li and Zhi-qiang Chen Department of Chemistry, Anyang Teachers College, Anyang, 等. INVERSE OPALINE STRUCTURE TITANIA PHOTONIC CRYSTALS BY FUNCTIONALLY MODIFIED COLLOIDAL CRYSTALS TEMPLATING[J]. 高分子科学(英文版), 2007,(2):217-220.DOI:
Hong-yu Li and Zhi-qiang Chen Department of Chemistry, Anyang Teachers College, Anyang, et al. INVERSE OPALINE STRUCTURE TITANIA PHOTONIC CRYSTALS BY FUNCTIONALLY MODIFIED COLLOIDAL CRYSTALS TEMPLATING[J]. 2007,(2):217-220.DOI:
<正>Ordered macroporous titania photonic crystals (PCs) and photonic balls were fabricated by functional modified polymer colloidal crystals. The TiO2 PCs and balls formed through this method exhibit no cracks and lacunae in large areas on their surface and their inner structures.正>
Abstract
Ordered macroporous titania photonic crystals (PCs) and photonic balls were fabricated by functional modified polymer colloidal crystals. The TiO2 PCs and balls formed through this method exhibit no cracks and lacunae in large areas on their surface and their inner structures.