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TiO2 Self-Assembled Thin-Walled Nanotube Arrays for Photonic Applications

机译:用于光子应用的TiO2自组装薄壁纳米管阵列

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摘要

Two-dimensional arrays of hollow nanotubes made of TiO2 are a promising platform for sensing, spectroscopy and light harvesting applications. Their straightforward fabrication via electrochemical anodization, growing nanotube pillars of finite length from a Ti foil, allows precise tailoring of geometry and, thus, material properties. We theoretically investigate these photonic crystal structures with respect to reduction of front surface reflection, achievable field enhancement, and photonic bands. Employing the Rigorous Coupled Wave Analysis (RCWA), we study the optical response of photonic crystals made of thin-walled nanotubes relative to their bare Ti foil substrate, including under additional charge carrier doping which might occur during the growth process.
机译:由TiO 2 是用于传感,光谱学和光收集应用的有前途的平台。它们通过电化学阳极氧化的直接制造,由Ti箔生长的有限长度的纳米管支柱,可精确定制几何形状,从而精确定制材料性能。我们从理论上研究了这些光子晶体结构,以减少正面反射,可实现的场增强和光子带。利用严格耦合波分析(RCWA),我们研究了由薄壁纳米管制成的光子晶体相对于其裸露的Ti箔基板的光学响应,包括在生长过程中可能发生的额外电荷载流子掺杂。

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