2016Journal of Experimental and Theoretical PhysicsRequires access

C60 fullerene decoration of carbon nanotubes

V. A. Demin, В. Д. Бланк, Aida R. Karaeva, B. A. Kulnitskiy, В. З. Мордкович, Yu. N. Parkhomenko, И. А. Пережогин, Mikhail Popov, Е. А. Скрылева, Sergey A. Urvanov, Л. А. Чернозатонский

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Abstract

A new fully carbon nanocomposite material is synthesized by the immersion of carbon nanotubes in a fullerene solution in carbon disulfide. The presence of a dense layer of fullerene molecules on the outer nanotube surface is demonstrated by TEM and XPS. Fullerenes are redistributed on the nanotube surface during a long-term action of an electron beam, which points to the existence of a molecular bond between a nanotube and fullerenes. Theoretical calculations show that the formation of a fullerene shell begins with the attachment of one C 60 molecule to a defect on the nanotube surface.

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A new fully carbon nanocomposite material is synthesized by the immersion of carbon nanotubes in a fullerene solution in carbon disulfide. The presence of a dense layer of fullerene molecules on the outer nanotube surface is demonstrated by TEM and XPS. Fullerenes are redistributed on the nanotube surface during a long-term action of an electron beam, which points to the existence of a molecular bond between a nanotube and fullerenes. Theoretical calculations show that the formation of a fullerene shell begins with the attachment of one C 60 molecule to a defect on the nanotube surface.

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Available abstract

A new fully carbon nanocomposite material is synthesized by the immersion of carbon nanotubes in a fullerene solution in carbon disulfide. The presence of a dense layer of fullerene molecules on the outer nanotube surface is demonstrated by TEM and XPS. Fullerenes are redistributed on the nanotube surface during a long-term action of an electron beam, which points to the existence of a molecular bond between a nanotube and fullerenes. Theoretical calculations show that the formation of a fullerene shell begins with the attachment of one C 60 molecule to a defect on the nanotube surface.

Key concepts: Fullerene, Carbon nanotube, Materials science, Carbon nanobud, Nanotube, Selective chemistry of single-walled nanotubes, Nanocomposite, Nanotechnology

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