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A novel high- refractive index episulfide- thiol polymer for nanoimprinting optical elements

机译:用于纳米印刷光学元件的新型高折射率髁酰基聚合物

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A novel optical polymer with a high refractive index (n = 1.707 at 590 nm) was developed consisting of episulfide and thiol bifunctional monomers. The episulfide derivative of 9,9-bis(4-glycidyloxyphenyl)fluorene, synthesized by the reaction of an epoxide and inorganic thiocyanate, reacts by a ring-opening polymerization with 4,4-thiodibenzenethiol to produce the optical polymer with high transparency over the visible region of the spectrum and thermally stable up to 290 degrees C. The developed episulfide-thiol optical polymer can be thermally nanoimprinted at 160 degrees C with nanoscale size resolution. Different nanostructures including sub-micron and nanoscale size gratings, two-dimensional photonic crystals, and plano-convex semispherical microlenses were successfully nanoimprinted with excellent pattern fidelity and low defectivity. These results exhibit the episulfide-thiol optical polymer as a potential candidate for applications in optical and optoelectronic devices.
机译:开发出具有高折射率(590nm的N = 1.707)的新型光学聚合物,由外硫化物和硫醇双官能单体组成。 通过环氧化物和无机硫氰酸酯的反应合成的9,9-双(4-缩水甘油氧基苯基)芴的海生衍生物通过用4,4-氧碘苯硫醇的开环聚合反应,使光学聚合物产生高透明度 光谱的可见区域和最高可达290℃的热稳定性。发育的外硫化物 - 硫醇光学聚合物可以在160℃下热纳米压印,具有纳米级尺寸分辨率。 不同的纳米结构包括亚微米和纳米级尺寸光栅,二维光子晶体和平面凸形的半球形微透镜,以优异的模式保真度和低缺陷成功纳米纹纳米。 这些结果表现出髁酰基硫醇光学聚合物作为光学和光电器件中应用的潜在候选者。

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