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Reversibly Thermoswitchable Two-Dimensional Periodic Gratings Prepared from Tethered Poly(AHsopropylacrylamide) on Silicon Surfaces

机译:由硅表面上的束缚聚(AHsopropylacrylamide)制备的可逆热切换二维周期性光栅

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In this study we used atom transfer radical polymerization to graft poly(AMsopropylacrylamide) (PNI-PAAm) onto flat Si substrates. We then applied very large-scale integration and reactive ion etching sequentially to generate 200-nm-scale hole arrays of tethered PNIPAAm as two-dimensional periodic concave gratings (2DPCGs) on the Si surfaces. The hole array structures of tethered PNIPAAm could be created and erased reversibly at 25 and 40 °C, respectively, leading to significant changes in the effective refractive index (n_(eff)). The values of n_(eff) of the 2DPCGs were related to the depth of their holes generated after etching for various times, resulting in a color change from blue to red that could be observed by the naked eye at incident angles of 10-20°. Moreover, we used effective-medium theory to calculate the filling factors of air inside the 2DPCGs to verify the structural changes of the tethered PNIPAAm. Such designed 2DPCGs of thermorespective hydrogel films have potential applications in temperature-responsive optical devices [e.g., as antireflection structured surfaces (ARSs)] that operate at both visible and near-infrared wavelengths.
机译:在这项研究中,我们使用原子转移自由基聚合将聚(AMso丙基丙烯酰胺)(PNI-PAAm)接枝到平坦的Si基板上。然后,我们依次应用了非常大规模的集成和反应离子刻蚀,以在Si表面上生成200纳米级的系留PNIPAAm孔阵列,作为二维周期性凹面光栅(2DPCG)。系留PNIPAAm的孔阵列结构可以分别在25和40°C下可逆地创建和擦除,从而导致有效折射率(n_(eff))发生显着变化。 2DPCG的n_(eff)值与刻蚀不同时间后产生的孔的深度有关,导致颜色从蓝色变为红色,用肉眼在10-20°入射角下可以观察到。此外,我们使用有效介质理论来计算2DPCG内部空气的填充因子,以验证系留PNIPAAm的结构变化。这样设计的热相关性水凝胶膜的2DPCG具有在可见光和近红外波长下工作的温度响应性光学装置中的潜在应用[例如,作为抗反射结构表面(ARS)]。

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