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Optical properties of carbon thin films containing nanoparticles

机译:含有纳米颗粒的碳薄膜的光学性质

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The incorporation of carbon nanoparticles in the forms of nanotubes and bucky onions have shown to improve the mechanical properties of amorphous carbon (a-C) thin films. In this paper we report on the change in the optical properties of a-C films containg nanoparticles. The optical band gap, index of refraction and extinction coefficient are studied. The optical band gap in highly tetrahedral amorphous carbon (ta-C) is found to be around 2 eV. It decreases almost linearly with the sp~2 fraction. It is theorized that the clustering of the sp~2 sites leads to a reduction in the band gap. In this theorized that the clustering of the sp~2 sites leads to a reduction in the band gap. In this paper, we study the influence of large sp~2 clusters in forms of graphitic nanoparticles on the optical of ta-C. We find that the optical gap remains around 1.8 eV even with the large inclusions of clustered nanoparticles. Furthermore, the gap remains close to 1.8 eV even when the sp~2 fraction in the amorphous matrix is increased. The index of refraction however is found to decrease with the sp~2 fraction indicating a reduction in density.
机译:在纳米管和屈曲洋葱的形式中掺入碳纳米粒子,表明,提高了无定形碳(A-C)薄膜的机械性能。在本文中,我们报告了纳米粒子的A-C膜的光学性质的变化。研究了光带隙,折射率和消光系数。发现高度四面体无定形碳(TA-C)中的光带间隙是约2eV。它与SP〜2分数几乎线性降低。理论上是SP〜2位点的聚类导致带隙的减小。在本发明中,SP〜2位点的聚类导致带隙的减少。在本文中,我们研究了在TA-C光学光学纳米粒子中大的SP〜2簇的影响。我们发现光学间隙甚至含有簇纳米颗粒的大夹杂物,仍然在1.8 eV左右。此外,即使在非晶基质中的SP〜2分数增加,间隙也仍然接近1.8eV。然而,发现折射率与表示密度降低的SP〜2分数降低。

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