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Photocrosslinkable Nanocomposite Multilayers for Responsive 1D Photonic Crystals

机译:响应一维光子晶体的可光交联纳米复合多层。

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A straightforward method to increase the refractive index of photocrosslinkable polymers by incorporation of high index inorganic nanoparticles is demonstrated and shown to enhance the reflection efficiency of thermochromic 1D photonic multilayers. The refractive index of spin-coated and UV-crosslinked films based on poly(para-methyl styrene) (PpMS) copolymers is increased from 1.57 for the copolymer alone to as high as 1.67 for nanocomposite samples with a volume fraction of 0.38 of ZrO2 nanoparticles. Thermochromic photonic multilayers consisting of alternating films of PpMS-ZrO2 with poly(N-isopropylacrylamide) (PNIPAM) copolymers shows the increases in reflectance as large as 2.5-fold compared to PpMS/PNIPAM multilayers lacking particles. In addition, ZrO2 nanoparticles are used to increase the refractive index of PNIPAM-based films up to 1.68 with a volume fraction of 0.49 of nanoparticles, enabling the fabrication of alternating PNIPAM-ZrO2/PNIPAM multilayers with a well-defined Bragg peak that shifts from 635 nm at 6 degrees C to 410 nm at 48 degrees C, and reflectance intensities as high as approximate to 0.30.
机译:通过掺入高折射率无机纳米粒子来提高光可交联聚合物折射率的直接方法已得到证明,并显示出可提高热致变色一维光子多层膜的反射效率。基于聚(对甲基苯乙烯)(PpMS)共聚物的旋涂膜和UV交联膜的折射率从单独的共聚物的1.57增至纳米复合材料样品的1.67,折射率为0.38的ZrO2纳米颗粒。与缺少颗粒的PpMS / PNIPAM多层膜相比,由PpMS-ZrO2与聚(N-异丙基丙烯酰胺)(PNIPAM)共聚物的交替膜组成的热致变色光子多层膜的反射率提高了2.5倍。此外,ZrO2纳米颗粒用于将基于PNIPAM的薄膜的折射率提高至1.68,其中纳米颗粒的体积分数为0.49,从而能够制造交替的PNIPAM-ZrO2 / PNIPAM多层膜,并具有清晰的布拉格峰,该峰从在6摄氏度下为635 nm,在48摄氏度下为410 nm,反射强度高达大约0.30。

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