International audienceThere are many examples in which the cavities of carbon nanotubes have been filled with a variety of compounds. Unprecedented structures compared to those of the same material in the bulk are observed, such as low dimensional crystals. Such encapsulated materials can have unusual properties that differ from those of the bulk material. The scope of this review is to give a brief approach to the different nanostructures formed after encapsulation of inorganic compounds within the inner cavities of carbon nanotubes. The confined materials can take the form of one-dimensional anowires, nanoclusters or even inorganic nanotubes
The crystal growth behaviour of solid phase halides encapsulated within single walled carbon nanotub...
The crystal growth behavior and crystallography of a variety of metal halides incorporated within si...
Indirect high resolution electron microscopy using one of several possible data-set geometries offer...
There are many examples in which the cavities of carbon nanotubes have been filled with a variety of...
This thesis is concerned with the encapsulation of inorganic material within the cavity of single-wa...
High resolution transmission electron microscopy (HRTEM) studies of single wall carbon nanotubes con...
The structural chemistry of nanoscale materials encapsulated within single-walled carbon nanotubes (...
Carbon nanotubes are one-dimensional materials with hollow structures, the diameters of which are us...
The filling of carbon nanotubes, which vary in diameter and morphology, is directly observed by mole...
Carbon nanotubes were discovered in 1991. It was soon recognized that layered metal dichalcogenides ...
Carbon nanotubes were discovered in 1991. It was soon recognized that layered metal dichalcogenides ...
The methods for preparing, opening and encapsulating materials inside carbon nanotubes are described...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
The formation of low-dimensional crystal structures, obtained by filling carbon nanotubes from the m...
The crystal growth behaviour of solid phase halides encapsulated within single walled carbon nanotub...
The crystal growth behavior and crystallography of a variety of metal halides incorporated within si...
Indirect high resolution electron microscopy using one of several possible data-set geometries offer...
There are many examples in which the cavities of carbon nanotubes have been filled with a variety of...
This thesis is concerned with the encapsulation of inorganic material within the cavity of single-wa...
High resolution transmission electron microscopy (HRTEM) studies of single wall carbon nanotubes con...
The structural chemistry of nanoscale materials encapsulated within single-walled carbon nanotubes (...
Carbon nanotubes are one-dimensional materials with hollow structures, the diameters of which are us...
The filling of carbon nanotubes, which vary in diameter and morphology, is directly observed by mole...
Carbon nanotubes were discovered in 1991. It was soon recognized that layered metal dichalcogenides ...
Carbon nanotubes were discovered in 1991. It was soon recognized that layered metal dichalcogenides ...
The methods for preparing, opening and encapsulating materials inside carbon nanotubes are described...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
The formation of low-dimensional crystal structures, obtained by filling carbon nanotubes from the m...
The crystal growth behaviour of solid phase halides encapsulated within single walled carbon nanotub...
The crystal growth behavior and crystallography of a variety of metal halides incorporated within si...
Indirect high resolution electron microscopy using one of several possible data-set geometries offer...