Structural studies of multi-wall carbon nanotubes prepared by template pyrolytic carbon deposition from thermal decomposition of propylene at 800 degrees C inside channels of an alumina membrane have been performed using X-ray diffraction. The two-dimensional diffraction pattern of the deposited carbon nanotubes, recorded directly within the alumina template using an image plate detector, exhibits two dark arcs corresponding to the (002) graphitic reflection. The anisotropic scattering distribution indicates alignment of the nanotubes. The diffracted intensity was measured for the powdered samples after removing the alumina membrane using a point detector. A maximum scattering vector of K-max = 20 angstrom(-1) yielded the radial distributio...
The atomic structure of single-wall carbon nanotube bundles produced by three different techniques ...
International audienceInorganic nanotubes represent an emerging class of nanobuilding blocks. Among ...
Carbon nanotubes have unique thermal, electrical and mechanical properties because of their unique n...
High-energy X-ray diffraction has been used to study the structure of multi-wall carbon nanotubes, p...
An alignment study of multi-wall N-doped carbon nanotubes prepared by a template pyrolytic carbon de...
cited By 12International audienceThe average structure of double-walled carbon nanotube (DWCNT) samp...
Following the synthesis of aligned single-wall carbon nanotubes in the channels of AlPO4-5 zeolite s...
International audienceCatalytic chemical vapour deposition has become a method of choice to produce ...
Proceedings of Diamond 2004, the 15th European Conference on Diamond, Diamond-Like Materials, Carbon...
Films of multiwall carbon nanotubes (MWCNTs) grown by thermal chemical vapor deposition were studied...
Carbon nanotube arrays with densities up to 1012 cmÿ2, have been successfully synthesized by pyrolys...
We report on structural studies of multiwall carbon nanotubes by wide-angle neutron scattering up to...
International audienceX-ray microdiffraction can be a powerful technique to study nanotube-based mat...
X-ray and neutron diffraction measurements are presented for a number of carbon samples prepared by ...
Rings composed of double-walled carbon nanotubes coherently packed in a triangular arrangement are o...
The atomic structure of single-wall carbon nanotube bundles produced by three different techniques ...
International audienceInorganic nanotubes represent an emerging class of nanobuilding blocks. Among ...
Carbon nanotubes have unique thermal, electrical and mechanical properties because of their unique n...
High-energy X-ray diffraction has been used to study the structure of multi-wall carbon nanotubes, p...
An alignment study of multi-wall N-doped carbon nanotubes prepared by a template pyrolytic carbon de...
cited By 12International audienceThe average structure of double-walled carbon nanotube (DWCNT) samp...
Following the synthesis of aligned single-wall carbon nanotubes in the channels of AlPO4-5 zeolite s...
International audienceCatalytic chemical vapour deposition has become a method of choice to produce ...
Proceedings of Diamond 2004, the 15th European Conference on Diamond, Diamond-Like Materials, Carbon...
Films of multiwall carbon nanotubes (MWCNTs) grown by thermal chemical vapor deposition were studied...
Carbon nanotube arrays with densities up to 1012 cmÿ2, have been successfully synthesized by pyrolys...
We report on structural studies of multiwall carbon nanotubes by wide-angle neutron scattering up to...
International audienceX-ray microdiffraction can be a powerful technique to study nanotube-based mat...
X-ray and neutron diffraction measurements are presented for a number of carbon samples prepared by ...
Rings composed of double-walled carbon nanotubes coherently packed in a triangular arrangement are o...
The atomic structure of single-wall carbon nanotube bundles produced by three different techniques ...
International audienceInorganic nanotubes represent an emerging class of nanobuilding blocks. Among ...
Carbon nanotubes have unique thermal, electrical and mechanical properties because of their unique n...