Publication | Open Access
Iridescence-controlled and flexibly tunable retroreflective structural color film for smart displays
189
Citations
38
References
2019
Year
Optical MaterialsEngineeringLuminescence PropertyIllumination ModelingDisplay TechnologyOptical PropertiesPhotopolymer NetworkAmbient White LightAdvanced Display TechnologyStructural Color MaterialsMaterials SciencePolymer MicrospheresNew Lighting TechnologySmart DisplaysWhite OledColorimetryApplied PhysicsLight AbsorptionOptoelectronics
Structural color materials, which use nano- or microstructures to reflect specific wavelengths of ambient white light, have drawn much attention owing to their wide applications ranging from optoelectronics, coatings, to energy-efficient reflective displays. Although various structural color materials based on specular or diffuse reflection have been demonstrated, neither efficient retroreflective structural colors nor iridescent and non-iridescent colors to different observers simultaneously were reported by existing artificial or natural structural color materials. Here, we show that by partially embedding a monolayer of polymer microspheres on the sticky side of a transparent tape, the spontaneously formed interferometric structure on the surface of air-cushioned microspheres can lead to unique structural colors that remain non-iridescent under coaxial illumination and viewing conditions, but appear iridescent under noncoaxial illumination and viewing conditions. Our findings demonstrate a smart, energy-efficient, and tunable retroreflective structural color material that is especially suitable for nighttime traffic safety and advertisement display applications.
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