Wijnhoven JEGJ, Vos WL
Van der Waals-Zeeman Instituut, Universiteit van Amsterdam, Valckenierstraat 65, NL-1018 XE Amsterdam, Netherlands. http://www. wins.uva.nl/research/scm.
Science. 1998 Aug 7;281(5378):802-4. doi: 10.1126/science.281.5378.802.
Three-dimensional crystals of air spheres in titania (TiO2) with radii between 120 and 1000 nanometers were made by filling the voids in artificial opals by precipitation from a liquid-phase chemical reaction and subsequently removing the original opal material by calcination. These macroporous materials are a new class of photonic band gap crystals for the optical spectrum. Scanning electron microscopy, Raman spectroscopy, and optical microscopy confirm the quality of the samples, and optical reflectivity demonstrates that the crystals are strongly photonic and near that needed to exhibit band gap behavior.
通过液相化学反应沉淀填充人造蛋白石中的空隙,随后通过煅烧去除原始蛋白石材料,制备出了半径在120至1000纳米之间的二氧化钛(TiO₂)气凝胶三维晶体。这些大孔材料是一类新型的用于光谱的光子带隙晶体。扫描电子显微镜、拉曼光谱和光学显微镜证实了样品的质量,光学反射率表明这些晶体具有很强的光子特性,接近展现带隙行为所需的特性。