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Control over the Structural and Optical Features of Nanoparticle-Based One-Dimensional Photonic Crystals

机译:基于纳米粒子的一维光子晶体的结构和光学特性的控制

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Herein we present a detailed analysis of the effect of the spin-coating protocol over the optical properties of nanoparticle-based one-dimensional photonic crystals. Based on these results, we provide a reliable synthetic route to attain high-quality porous multilayers in which the effect of imperfections is minimized and whose Bragg diffraction can be precisely tuned over the entire visible and near-infrared spectrum. We present a systematic study of the effect of the acceleration ramp and final rotation speed over the structural and optical quality of these materials. This allows us to relate the structural variations observed with the different relative importance of fluid flow and solvent evaporation on the thinning of each layer in the stack for the different deposition conditions employed.
机译:本文中,我们对旋涂协议对基于纳米粒子的一维光子晶体的光学特性的影响进行了详细分析。基于这些结果,我们提供了一种可靠的合成路线,可以获得高质量的多孔多层膜,其中瑕疵的影响降至最低,并且其布拉格衍射可以在整个可见光和近红外光谱范围内精确调节。我们目前对这些材料的结构和光学质量对加速斜率和最终转速的影响进行了系统的研究。这使我们能够将所观察到的结构变化与在所采用的不同沉积条件下堆叠中每一层变薄时流体流动和溶剂蒸发的相对相对重要性不同。

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