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Visible and infrared optical properties of stacked cone graphite microtubes

机译:堆叠锥形石墨微管的可见和红外光学性质

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摘要

The absorptive and scattering optical properties of heat-treated, vapor-grown, graphite microtubes consisting of nanotubes in a "stacked cone" configuration were investigated through the visible and infrared wavelengths using photoacoustic and other spectrometric techniques. However, computations of these properties involved uncertainties that were not easily resolved; the appropriate dielectric coefficients were presumed to be a combination of the published values for the distinct orientations of graphite, but the correct proportions are not evident and none of the reasonable choices produced satisfactory agreement (within the measurement limits of error). Since both of the primary components of the extinction were measured, the appropriate computational codes were employed in reverse to compute the dielectric coefficients for the graphite microtubes. Differences, primarily for the imaginary index, are most distinct for visible and near infrared wavelengths; in this wavelength region, the imaginary index falls progressively to less than half that for the computed mixture.
机译:使用光声和其他光谱技术,通过可见光和红外波长研究了由“堆积锥”构型的纳米管组成的经过热处理的气相生长石墨微管的吸收和散射光学性能。但是,这些属性的计算涉及不确定性,这些不确定性不易解决。适当的介电系数假定为石墨不同方向的公开值的组合,但是正确的比例不明显,并且没有合理的选择产生令人满意的一致性(在测量误差范围内)。由于已测量了消光的两个主要成分,因此反向采用了适当的计算代码来计算石墨微管的介电系数。主要在虚数指标上的差异对于可见光和近红外波长最为明显。在该波长区域中,虚指数逐渐下降到小于计算出的混合物的虚指数的一半。

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