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An Electrically Tunable Color-Visualization Strategy Based on Ba0.5Sr0.5TiO3 Thin Films

机译:基于BA0.5SR0.5TIO3薄膜的电调谐颜色可视化策略

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A dynamic color visualization strategy was proposed based on ITO (Indium Tin Oxide)-BST (Ba0.5Sr0.5TiO3)-ITO multiple nanofilms. A black layer was capitalized on to absorb the incoherent scattered light and to enhance the contrast ratio of the reflected light. While the thickness of BST thin film changed from 100 nm to 140 nm, the peak wavelength of the reflected light shifted from 383.7 nm to 501.2 nm as the refractive index of BST thin film was set as 2.4. Meanwhile, the visualized color of the multiple nanofilms was changed from purple to turquoise. The measured reflected spectra fitted well with the simulation results based on Finite Element Method. The fabricated samples proved that the black layer played an important role in the contrast ratio increase.
机译:基于ITO(氧化铟锡)-BST(Ba0.5SR0.5TiO3)-ito多纳米螺纹,提出了一种动态颜色可视化策略。 黑色层被大写为吸收不相干散射光并提高反射光的对比度。 虽然BST薄膜的厚度从100nm变为140nm,但由于BST薄膜的折射率设定为2.4,因此将反射光的峰值波长从383.7nm移位到501.2nm。 同时,多个纳米岩的可视化颜色从紫色变为绿松石。 测量的反射光谱与基于有限元法的仿真结果均匀。 制造的样品证明,黑层在对比度增加中起重要作用。

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