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Synthesis of carbon nanotubes by the laser ablation method: Effect of laser wavelength

physica status solidi (b) · 2015 · Vol. 252(8) · pp. 1860–1867
Justyna Chrzanowska-GiżyńskaJ. HoffmanArtur MałolepszyMarta Mazurkiewicz‐PawlickaTomasz A. KowalewskiZ. SzymańskiLeszek Stobiński

Abstract

The effect of laser wavelength on single-wall carbon nanotubes synthesis yield and their properties was studied. A double-pulse Nd:YAG laser, working at a wavelength of 355 or 1064 nm, was used for carbon nanotubes production. The synthesized carbon nanotubes (CNTs) were investigated using the SEM/STEM microscopy and Raman spectroscopy. The results show that the useful range of UV laser radiation fluence is narrower and the properties of synthesized CNTs depend much more on the laser fluence than in the case of infrared laser radiation.

Carbon Nanotubes in CompositesDiamond and Carbon-based Materials ResearchFullerene Chemistry and ApplicationsCarbon nanotubeFluenceMaterials scienceLaserRaman spectroscopyLaser ablationWavelengthOptoelectronicsFar-infrared laserCarbon fibers
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References
Raman spectroscopy of carbon nanotubes
Physics Reports · 2005 · 4,365 citations
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