The atomic structure of single-wall carbon nanotube bundles produced by three different techniques (laser ablation, electric arc discharge and catalytic chemical vapor deposition (CCVD)) has been characterized by electron diffraction and microscopy. Information on the helicity and the lattice packing has been obtained. Concerning the helicity, small bundles produced by CCVD exhibit only one or two tube helicities within a single bundle. The diffraction patterns of laser-ablation produced bundles also present well-defined but more diversified chiralities within a single bundle. By contrast the data acquired on bundles formed by arc discharge show a more diffuse pattern, characteristic of a random chirality dispersion within a single ...
We introduce a novel non-dimensional “intrinsic layer-line spacing” concept for electron diffraction...
We report a method that allows direct, systematic, and accurate determination of the atomic structur...
We use high resolution electron microscopy to study the structure of carbon nanotubes. Although the ...
Determining precisely the atomic structure of single-wall carbon nanotubes is essential since it tai...
Carbon nanotubes have many excellent properties that are strongly influenced by their atomic structu...
Rings composed of double-walled carbon nanotubes coherently packed in a triangular arrangement are o...
The atomic structure of ultralong carbon nanotubes obtained by catalytic chemical vapor deposition i...
Cross-sectional structural features of carbon nanotubes have been investigated by high resolution el...
The atomic structures of 124 single-walled carbon nanotubes, described by their diameter and helicit...
Indirect high resolution electron microscopy using one of several possible data-set geometries offer...
Transmission electron imaging and diffraction are used to probe the atomic-level structure of single...
The electron emission and structural properties of single-walled carbon nanotubes (SWCNTs) were inve...
The work in the ELENA research consortium has progressed well. The ACCLAB and COMP groups have in cl...
Low dimensional carbon based materials are strictly dependent from the intrinsic property of self-as...
Recent years have witnessed an increased demand for more powerful computers and continuous miniaturi...
We introduce a novel non-dimensional “intrinsic layer-line spacing” concept for electron diffraction...
We report a method that allows direct, systematic, and accurate determination of the atomic structur...
We use high resolution electron microscopy to study the structure of carbon nanotubes. Although the ...
Determining precisely the atomic structure of single-wall carbon nanotubes is essential since it tai...
Carbon nanotubes have many excellent properties that are strongly influenced by their atomic structu...
Rings composed of double-walled carbon nanotubes coherently packed in a triangular arrangement are o...
The atomic structure of ultralong carbon nanotubes obtained by catalytic chemical vapor deposition i...
Cross-sectional structural features of carbon nanotubes have been investigated by high resolution el...
The atomic structures of 124 single-walled carbon nanotubes, described by their diameter and helicit...
Indirect high resolution electron microscopy using one of several possible data-set geometries offer...
Transmission electron imaging and diffraction are used to probe the atomic-level structure of single...
The electron emission and structural properties of single-walled carbon nanotubes (SWCNTs) were inve...
The work in the ELENA research consortium has progressed well. The ACCLAB and COMP groups have in cl...
Low dimensional carbon based materials are strictly dependent from the intrinsic property of self-as...
Recent years have witnessed an increased demand for more powerful computers and continuous miniaturi...
We introduce a novel non-dimensional “intrinsic layer-line spacing” concept for electron diffraction...
We report a method that allows direct, systematic, and accurate determination of the atomic structur...
We use high resolution electron microscopy to study the structure of carbon nanotubes. Although the ...