结构着色
彩虹色
材料科学
双层
反向
异质结
聚偏氟乙烯
衍射
光电子学
光学
光子晶体
纳米技术
聚合物
复合材料
生物
物理
遗传学
膜
数学
几何学
作者
Meng Yao,Jinjing Qiu,Suli Wu,Benzhi Ju,Shufen Zhang,Bingtao Tang
标识
DOI:10.1021/acsami.8b14146
摘要
The unique brilliant and angle-independent structural colors of morpho butterfly wings were derived from the multilayer interference, diffraction, and scattering of light with a composite structure including ordered and quasiamorphous arrays. Inspired by the biological heterostructure of ordered and quasiamorphous arrays in the wings, a bilayer inverse heterostructure (BLIHS) containing ordered array layers inverse structure (OALIS) and quasiamorphous array layers inverse structure (Q-AALIS) of polyvinylidene fluoride were successfully prepared through the template method. The BLIHS films selectively displayed iridescent structural color derived from Bragg diffraction of OALIS, whereas the color states transform to noniridescent color because of Q-AALIS just by rotating the sample. Furthermore, the patterning process could be realized by using the spray-coating method on the BILIS films as quasiamorphous array layers. By virtue of this novel photonic structure, the switch between hiding and displaying patterns could be easily realized by changing the viewing angles, and the as-prepared films exhibited inherent excellent durability, which is crucial to their potential for practical applications as anticounterfeiting materials.
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