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January 9, 2008Nano Letters702 citations

Experimental Observation of an Extremely Dark Material Made By a Low-Density Nanotube Array

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ZYZu‐Po YangLCLijie CiJBJames A. Bur

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Abstract

An ideal black material absorbs light perfectly at all angles and over all wavelengths. Here, we show that low-density vertically aligned carbon nanotube arrays can be engineered to have an extremely low index of refraction, as predicted recently by theory Garcia-Vidal, F. J.; Pitarke, J. M.; Pendry, J. B. Phys. Rev. Lett. 1997, 78, 4289-4292 and, combined with the nanoscale surface roughness of the arrays, can produce a near-perfect optical absorption material. An ultralow diffused reflectance of 1 x 10(-7) measured from such arrays is an order-of-magnitude lower compared to commercial low-reflectance standard carbon. The corresponding integrated total reflectance of 0.045% from the nanotube arrays is three times lower than the lowest-ever reported values of optical reflectance from any material, making it the darkest man-made material ever.

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Cite This Study

Yang et al. (2008) studied this question.

synapsesocial.com/papers/69d7aedb3fae90fd6048fed7https://doi.org/10.1021/nl072369t
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