【摘 要】
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High refractive index(HRI,n>1.8)photonic structures offer strong light confinement and refractive effi-ciencies,cover the entire visible spectrum and can be tun
【机 构】
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Key Laboratory of Green Printing,CAS Research/Education Center for Excellence in Molecular Sciences,
论文部分内容阅读
High refractive index(HRI,n>1.8)photonic structures offer strong light confinement and refractive effi-ciencies,cover the entire visible spectrum and can be tuned by designing geometric arrayed features.However,its practical applications are still hindered by the applicability and material limitation of lithography-based micro/nano fabrication approaches.Herein,we demonstrate a fluid-guided printing process for preparing HRI selenium microarrays.The microstructured flexible template is replicated from the diced silicon wafer without any lithography-based methods.When heated above the glass transition temperature,the flow characteristics of selenium endows the structure downsizing and orientation pat-terning between the target substrate and the template.Near 10 times narrowing selenium microarrays(1.9 μm width)are patterned from the non-lithography template(18 μm width).HRI selenium microar-rays offer high refractive efficiencies and strong optical confinement abilities,which achieve angle-dependent structurally coloration and polarization.Meanwhile,the color difference can be recognized under the one degree distinction of the angle between incident and refracted light.This printing platform will facilitate HRI optical metasurfaces in a variety of applications,ranging from photonic sensor,polar-ization modulation to light manipulation.
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