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Highly Transmissive Carbon Nanotube Forests Grown at Low Substrate Temperature

机译:在低底物温度下生长的高透射率碳纳米管森林

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摘要

Despite the "darker than black" association attributed to carbon nanotube forests, here is shown that it is also possible to grow these structures, over heat-sensitive substrates, featuring highly transmissive characteristics from the UV to infrared wavelengths, for forest heights as high as 20 μm. The optical transmission is interpreted in terms of light propagation along channels that are self-generated by localized bundling of tubes, acting as waveguides. A good correlation is shown between the distribution of diameter sizes of these sub-wavelength voids and the transmission spectrum of the forests. For the shorter visible and near-UV wavelengths, this model shows that light propagates by channeling along individual vertical voids in the forests, which elucidates the origin for the widely-reported near-zero reflectance values observed in forests. For the longer infrared wavelengths, the mode spreads over many nanotubes and voids, and propagates along a "homogeneous effective medium". The strong absorption of the forest at the shorter wavelengths is correlated in terms of the stronger attenuation inside a waveguide cavity, according to the λ_(-1/2) attenuation dependency of standard waveguide theory. The realization of this material can lead to novel avenues in new optoelectronic device design, where the carbon nanotube forests can be used as highly conducting "scaffolds" for optically active materials, whilst also allowing light to penetrate to significant depths into the structure, in excess of 20 μm, enabling optical functionality.
机译:尽管归因于碳纳米管森林的“比黑更黑”的关联,但在此表明,对于森林高度高达200毫米,也可以在热敏性基底上生长这些结构,这些基底具有从UV到红外波长的高度透射特性。 20微米光学传输是根据沿通道传播的光来解释的,这些通道是通过充当波导的管的局部捆绑而自生成的。这些亚波长孔隙的直径大小分布与森林的透射光谱之间显示出良好的相关性。对于较短的可见光波长和近紫外线波长,该模型表明,光线通过沿着森林中的各个垂直空隙进行传播而传播,这阐明了在森林中观察到的广泛报道的近零反射率值的来源。对于更长的红外波长,该模式分布在许多纳米管和空隙上,并沿“均匀有效介质”传播。根据标准波导理论的λ_(-1/2)衰减依赖性,在较短波长下森林的强吸收与波导腔内部较强的衰减相关。这种材料的实现可以为新的光电器件设计带来新的途径,其中碳纳米管森林可以用作光学活性材料的高导电“支架”,同时还可以使光过多地渗透到结构中厚度为20μm,具有光学功能。

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  • 来源
    《Advanced Functional Materials 》 |2013年第44期| 5502-5509| 共8页
  • 作者单位

    Advanced Technology Institute University of Surrey Guildford. CU2 7XH,UK;

    Advanced Technology Institute University of Surrey Guildford. CU2 7XH,UK;

    Advanced Technology Institute University of Surrey Guildford. CU2 7XH,UK;

    Advanced Technology Institute University of Surrey Guildford. CU2 7XH,UK;

    Advanced Technology Institute University of Surrey Guildford. CU2 7XH,UK;

    Advanced Technology Institute University of Surrey Guildford. CU2 7XH,UK;

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