Reduction of short wavelength reflectance of multi-wall carbon nanotubes through ultraviolet laser irradiation

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Abstract

Multi-wall carbon nanotube coatings are used as broadband, low-reflectance absorbers for bolometric applications and for stray light control. They are also used as high emittance blackbody radiators. Irradiation of single wall carbon nanotubes with ultraviolet (UV) laser light has been shown to remove amorphous carbon debris, but there have been few investigations of the interaction of UV light with the more complex physics of multi-wall carbon nanotubes. We present measurements of reflectance and surface morphology before and after exposure of multi-wall carbon nanotube coatings to 248 nm UV laser light. We show that UV exposure reduces the reflectivity at wavelengths below 600 nm and present modeling of the thermal cycling the UV exposure causes at the surface of the carbon nanotubes. This effect can be used to flatten the spectral shape of the reflectivity curve of carbon nanotube absorber coatings used for broadband applications. Finally, we find that the effect of UV exposure depends on the nanotube growth process.

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APA

Stephens, M. S., Simonds, B. J., Yung, C. S., Conklin, D., Livigni, D. J., Oliva, A. R., & Lehman, J. H. (2018). Reduction of short wavelength reflectance of multi-wall carbon nanotubes through ultraviolet laser irradiation. AIP Advances, 8(5). https://doi.org/10.1063/1.5021263

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