Coiled carbon nanotubes were produced catalytically by thermal decomposition of hydrocarbon gas. After deposition on a silicon substrate, the three-dimensional structure of the helix-shaped multiwalled nanotubes can be visualized with atomic force microscopy. Helical structures of both chiralities are present in the nanotube deposits. For larger coil diameters (> 170 nm), force modulation microscopy allows one to probe the local elasticity along the length of the coil. Our results agree with the classical theory of elasticity. Similar to the case of straight nanotubes, the Young modulus of coiled multiwalled nanotubes remains comparable to the very high Young modulus of hexagonal graphene sheets.status: publishe
Carbon nanotubes are molecular-scale tubes of graphitic carbon that possess many unique properties. ...
AbstractCarbon nanotubes (CNTs) consist of a graphene sheet (two-dimensional hexagonal lattices of c...
We report measurements of the bending stiffness in free standing carbon nanotubes, using atomic forc...
We introduce a method for atomic force microscopy (AFM)-based detection of mechanical resonances in ...
The mechanical response of thirteen different helical multi-walled carbon nanocoils to axial compres...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
Collapsed multiwalled carbon nanotube (MWCNT) sections and segments (carbon nanotube ribbons) on sur...
Abstract. A variety of outstanding experimental results on the elucidation of the elastic properties...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
Carbon nanotubes (CNTs) have drawn a lot of attention during the last decades due to its promising m...
Tapping-mode atomic force microscopy was used to study the radial deformability of a multiwalled car...
Carbon nanotubes (CNTs) have drawn a lot of attention during the last decades due to its promising m...
We measured the elastic modulus of individual multiwalled carbon nanotubes (MWCNTs) grown by catalyt...
Carbon nanotubes are molecular-scale tubes of graphitic carbon that possess many unique properties. ...
Carbon nanotubes are molecular-scale tubes of graphitic carbon that possess many unique properties. ...
AbstractCarbon nanotubes (CNTs) consist of a graphene sheet (two-dimensional hexagonal lattices of c...
We report measurements of the bending stiffness in free standing carbon nanotubes, using atomic forc...
We introduce a method for atomic force microscopy (AFM)-based detection of mechanical resonances in ...
The mechanical response of thirteen different helical multi-walled carbon nanocoils to axial compres...
A popular technique for characterizing the mechanical properties of carbon nanotubes is to apply a o...
Collapsed multiwalled carbon nanotube (MWCNT) sections and segments (carbon nanotube ribbons) on sur...
Abstract. A variety of outstanding experimental results on the elucidation of the elastic properties...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
Carbon nanotubes (CNTs) have extraordinary electrical and mechanical properties, and many potential ...
Carbon nanotubes (CNTs) have drawn a lot of attention during the last decades due to its promising m...
Tapping-mode atomic force microscopy was used to study the radial deformability of a multiwalled car...
Carbon nanotubes (CNTs) have drawn a lot of attention during the last decades due to its promising m...
We measured the elastic modulus of individual multiwalled carbon nanotubes (MWCNTs) grown by catalyt...
Carbon nanotubes are molecular-scale tubes of graphitic carbon that possess many unique properties. ...
Carbon nanotubes are molecular-scale tubes of graphitic carbon that possess many unique properties. ...
AbstractCarbon nanotubes (CNTs) consist of a graphene sheet (two-dimensional hexagonal lattices of c...
We report measurements of the bending stiffness in free standing carbon nanotubes, using atomic forc...