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Cobalt nanocluster-filled carbon nanotube arrays: Engineered photonic bandgap and optical reflectivity

机译:钴纳米团簇填充的碳纳米管阵列:工程光子带隙和光反射率

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摘要

Perfect vertically aligned and periodically arranged arrays of multidielectric heterostructures are ideal platforms both for photonic crystals and photonic bandgap materials. Carbon nanotubes grown inside anodic alumina templates form a novel class of heterostructured materials ideally suited for building such platforms. By engineering metallic (cobalt) nanoclusters inside the nanotubes, we present a novel method for tailoring the photonic bandgap as well as the magnitude of the reflectivity in these systems. We present spectroscopic ellipsometry (SE) and reflectivity measurements to investigate the effect of the presence of cobalt clusters on the optical response of multiwall carbon nanotubes (MWNT) grown in anodized alumina template. The real (ε_1) and imaginary (ε_2) part of the pseudodielectric function of the MWNT and Co-MWNT system have been studied in a wide energy range (1.4-5 eV). We found that the cobalt filling modifies the electronic structure of the nanotubes, suggesting that the insertion of the clusters leads to a semiconductor behavior. Angle-resolved reflectivity measurements further show that the metal filling drastically enhances the optical response up to 2 orders of magnitude.
机译:理想的垂直排列和周期性排列的多介质异质结构阵列是光子晶体和光子带隙材料的理想平台。在阳极氧化铝模板内部生长的碳纳米管形成了一类新型的异质结构材料,非常适合构建此类平台。通过工程化纳米管内部的金属(钴)纳米团簇,我们提出了一种新颖的方法,用于调整光子带隙以及这些系统中反射率的大小。我们目前的椭圆偏振光谱法(SE)和反射率测量来调查钴簇的存在对阳极氧化铝模板中生长的多壁碳纳米管(MWNT)的光学响应的​​影响。 MWNT和Co-MWNT系统的伪介电函数的实部(ε_1)和虚部(ε_2)已在较宽的能量范围(1.4-5 eV)中进行了研究。我们发现钴填充会改变纳米管的电子结构,这表明簇的插入会导致半导体行为。角度分辨的反射率测量结果进一步表明,金属填充物可将光学响应大幅提高至2个数量级。

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