纳米晶
材料科学
纳米技术
多孔性
纳米结构
光子学
光催化
锡
聚苯乙烯
光子晶体
氧化铟锡
纳米尺度
二氧化钛
光电子学
复合材料
薄膜
聚合物
催化作用
化学
有机化学
冶金
作者
Jae Hyo Han,Anna V. Shneidman,Do Yoon Kim,N. Nicolas,Jessi E. S. van der Hoeven,Michael Aizenberg,Joanna Aizenberg
标识
DOI:10.1002/ange.202111048
摘要
Abstract Three‐dimensional ordered porous materials known as inverse opal films (IOFs) were synthesized using nanocrystals with precisely defined morphologies. Comprehensive theoretical and experimental studies of the volume fraction ratio and electrostatic interactions between nanocrystals and polystyrene templating particles enabled the formation of highly ordered crack‐free photonic structures. The synthetic strategy was first demonstrated using titanium dioxide (TiO 2 ) nanocrystals of different shapes and then generalized to assemble nanocrystals of other functional materials, such as indium tin oxide and zinc‐doped ferrite. Tunable photocatalytic activity of the TiO 2 IOFs, modulated through the choice of the shape of TiO 2 nanocrystals in conjunction with selecting desired macroscopic features of the IOF, was further explored. In particular, enhanced activity is observed for crack‐free, highly ordered IOFs whose photonic properties can improve light absorption via the slow light effect. This study opens new opportunities in designing multi‐length‐scale porous nanoarchitectures having enhanced performance in a variety of applications.
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