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Optical properties of honeycomb arrays of multi walled carbon nanotubes

机译:多壁碳纳米管蜂窝阵列的光学性质

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Carbon nanotubes (CNT) have been grown in a honeycomb configuration on silicon substrates using nanosphere self-assembly and plasma enhanced chemical vapor deposition. The optical properties of the arrays were also studied. Diffraction efficiency was found to be a function of the wavelength, angle of incidence and state of polarization of the incident light. The unique optical properties of the arrays combined with the excellent mechanical and electrical properties of carbon nanotubes indicates that these materials may find many uses in the field of optoelectronics. In addition to their optical properties, periodic CNT arrays have a host of other unique electromagnetic and mechanical properties that may be exploited for numerous applications. Polarization measurements indicate that the intensity of both the diffracted light and diffusely scattered light is dependent on wavelength and angle of incidence. These arrays not only reflect and diffract light, but can also have a photonic band gap in, or around, the visible frequency range. The precise frequency location and size of this gap can be controlled by the structural and material parameters of the arrays.
机译:碳纳米管(CNT)已使用纳米球自组装和等离子增强化学气相沉积法以蜂窝状在硅基板上生长。还研究了阵列的光学性质。发现衍射效率是波长,入射角和入射光的偏振状态的函数。阵列的独特光学性能与碳纳米管的出色机械和电性能相结合,表明这些材料可能在光电学领域找到许多用途。除了其光学特性外,周期性CNT阵列还具有许多其他独特的电磁和机械特性,可用于众多应用。偏振测量结果表明,衍射光和散射光的强度均取决于波长和入射角。这些阵列不仅反射和衍射光,而且在可见频率范围内或附近具有光子带隙。间隙的精确频率位置和大小可以通过阵列的结构和材料参数来控制。

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