k Multiwalled carbon nanotube, TEM Multiwalled carbon nanotube MWNT, coloured transmission electron micrograph TEM. MWNTs are cylindrical fullerene molecules nanotubes with multiple outer layers. Fullerenes are a structural form allotrope of carbon. These MWNTs are functionalised, meaning different functional groups groups of atoms which are responsible for a molecules chemical behaviour have been grafted on at the surface of the nanotubes. The fact MWNTs have multiple layers means this will not result in unwanted changes in the nanotubes mechanical or electrical properties. Such structures could have a wide range of technological and medical uses. Magnification x73,400 when printed 10 centimetres wide. Stock Photo - Afloimages
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Multi walled carbon nanotube, TEM Multi walled carbon nanotube  MWNT , coloured transmission electron micrograph  TEM . MWNTs are cylindrical fullerene molecules  nanotubes  with multiple outer layers. Fullerenes are a structural form  allotrope  of carbon. These MWNTs are functionalised, meaning different functional groups  groups of atoms which are responsible for a molecule s chemical behaviour  have been grafted on at the surface of the nanotubes. The fact MWNTs have multiple layers means this will not result in unwanted changes in the nanotube s mechanical or electrical properties. Such structures could have a wide range of technological and medical uses. Magnification: x73,400 when printed 10 centimetres wide.
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Multi-walled carbon nanotube, TEM

Multi-walled carbon nanotube (MWNT), coloured transmission electron micrograph (TEM). MWNTs are cylindrical fullerene molecules (nanotubes) with multiple outer layers. Fullerenes are a structural form (allotrope) of carbon. These MWNTs are functionalised, meaning different functional groups (groups of atoms which are responsible for a molecule's chemical behaviour) have been grafted on at the surface of the nanotubes. The fact MWNTs have multiple layers means this will not result in unwanted changes in the nanotube's mechanical or electrical properties. Such structures could have a wide range of technological and medical uses. Magnification: x73,400 when printed 10 centimetres wide.

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