We have assembled molecular arrays of C60 inside double-walled carbon nanotubes (DWNTs) with internal diameters of 11-26 A and directly observed the existence of different crystalline phases of C60 previously predicted theoretically. The structure of the encapsulated C60 crystal is defined by the internal diameter of the DWNT, as the molecules adjust their packing arrangement in order to maximize van der Waals interactions. We have also shown that fullerenes in C(60)@DWNT interact with the outer layer of DWNTs, as demonstrated by the efficient filling of DWNTs with internal diameters of less than 12 A
A continuous model of a fullerene inside a carbon nanotube and for which both the fullerene and carb...
We present compelling evidence pointing to the possible synthesis of unconventional C-66 and C-68 fu...
The encapsulation of trityl-functionalised C60 molecules inside carbon nanotubes drastically affects...
Using primarily high resolution transmission electron microscopy (HRTEM), we have discovered C60@SWN...
We report the first detailed fully atomistic molecular dynamics study of the encapsulation of symmet...
Carbon nanotubes can encapsulate several molecular species forming one-dimensional crystals. Using p...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
In this thesis, we theoretically investigated energetical, thermodynamical and structural properties...
A clear understanding of the interactions between the building blocks of self-assembled molecular ma...
A fascinating structural transformation occurring inside single-walled carbon nanotubes (SWNTs) is t...
International audienceX-ray diffraction studies comparing the transformation of C$_{60}$ and C$_{70}...
While fullerenes form in yields exceeding 30% by mass when a laser generated pure carbon vapor is al...
We present an investigation of the orientations and positions of tubular fullerene molecules (C90, ....
A fascinating structural transformation occurring inside single-walled carbon nanotubes (SWNTs) is t...
We encapsulate a number of fullerenes inside single-walled carbon nanotubes (SWNTs) including La2@C8...
A continuous model of a fullerene inside a carbon nanotube and for which both the fullerene and carb...
We present compelling evidence pointing to the possible synthesis of unconventional C-66 and C-68 fu...
The encapsulation of trityl-functionalised C60 molecules inside carbon nanotubes drastically affects...
Using primarily high resolution transmission electron microscopy (HRTEM), we have discovered C60@SWN...
We report the first detailed fully atomistic molecular dynamics study of the encapsulation of symmet...
Carbon nanotubes can encapsulate several molecular species forming one-dimensional crystals. Using p...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
In this thesis, we theoretically investigated energetical, thermodynamical and structural properties...
A clear understanding of the interactions between the building blocks of self-assembled molecular ma...
A fascinating structural transformation occurring inside single-walled carbon nanotubes (SWNTs) is t...
International audienceX-ray diffraction studies comparing the transformation of C$_{60}$ and C$_{70}...
While fullerenes form in yields exceeding 30% by mass when a laser generated pure carbon vapor is al...
We present an investigation of the orientations and positions of tubular fullerene molecules (C90, ....
A fascinating structural transformation occurring inside single-walled carbon nanotubes (SWNTs) is t...
We encapsulate a number of fullerenes inside single-walled carbon nanotubes (SWNTs) including La2@C8...
A continuous model of a fullerene inside a carbon nanotube and for which both the fullerene and carb...
We present compelling evidence pointing to the possible synthesis of unconventional C-66 and C-68 fu...
The encapsulation of trityl-functionalised C60 molecules inside carbon nanotubes drastically affects...