Extreme nanowires (ENs) represent the ultimate class of crystals: They are the smallest possible periodic materials. With atom-wide motifs repeated in one dimension (1D), they offer a privileged perspective into the physics and chemistry of low-dimensional systems. Single-walled carbon nanotubes (SWCNTs) provide ideal environments for the creation of such materials. Here we present a comprehensive study of Te ENs encapsulated inside ultranarrow SWCNTs with diameters between 0.7 nm and 1.1 nm. We combine state-of-the-art imaging techniques and 1D-adapted ab initio structure prediction to treat both confinement and periodicity effects. The studied Te ENs adopt a variety of structures, exhibiting a true 1D realization of a Peierls structural d...
One-dimensional (1D) atomic chains of CsI were previously reported in double-walled carbon nanotubes...
There are many examples in which the cavities of carbon nanotubes have been filled with a variety of...
One-dimensional (1D) atomic chains of CsI were previously reported in double-walled carbon nanotubes...
Extreme nanowires (ENs) represent the ultimate class of crystals: They are the smallest possible per...
Extreme nanowires (ENs) represent the ultimate class of crystals: They are the smallest possible per...
Nanostructuring, e.g., reduction of dimensionality in materials, offers a viable route toward regula...
Nanostructuring, e.g. reduction of dimensionality in materials offers a viable route towards regulat...
Nanostructuring, e.g., reduction of dimensionality in materials, offers a viable route toward regula...
Extreme nanowires: structural and functional properties of filled single walled carbon nanotubes ...
The imaging and characterization of individual molecules and atomically thin, effectively one-dimens...
Atomically thin nanowires (NWs) can be synthesized inside single-walled carbon nanotubes (SWCNTs) an...
Following the first report on the concentric nature of carbon nanotube (CNTs) in 1991, an era of glo...
Germanium telluride has attracted great research interest, primarily because of its phase-change pro...
The encapsulation of nanowires (NWs) into single-walled carbon nanotubes (SWCNTs) is of great signif...
Nanostructuring, <i>e</i>.<i>g</i>., reduction of dimensionality in materials, offers a viable route...
One-dimensional (1D) atomic chains of CsI were previously reported in double-walled carbon nanotubes...
There are many examples in which the cavities of carbon nanotubes have been filled with a variety of...
One-dimensional (1D) atomic chains of CsI were previously reported in double-walled carbon nanotubes...
Extreme nanowires (ENs) represent the ultimate class of crystals: They are the smallest possible per...
Extreme nanowires (ENs) represent the ultimate class of crystals: They are the smallest possible per...
Nanostructuring, e.g., reduction of dimensionality in materials, offers a viable route toward regula...
Nanostructuring, e.g. reduction of dimensionality in materials offers a viable route towards regulat...
Nanostructuring, e.g., reduction of dimensionality in materials, offers a viable route toward regula...
Extreme nanowires: structural and functional properties of filled single walled carbon nanotubes ...
The imaging and characterization of individual molecules and atomically thin, effectively one-dimens...
Atomically thin nanowires (NWs) can be synthesized inside single-walled carbon nanotubes (SWCNTs) an...
Following the first report on the concentric nature of carbon nanotube (CNTs) in 1991, an era of glo...
Germanium telluride has attracted great research interest, primarily because of its phase-change pro...
The encapsulation of nanowires (NWs) into single-walled carbon nanotubes (SWCNTs) is of great signif...
Nanostructuring, <i>e</i>.<i>g</i>., reduction of dimensionality in materials, offers a viable route...
One-dimensional (1D) atomic chains of CsI were previously reported in double-walled carbon nanotubes...
There are many examples in which the cavities of carbon nanotubes have been filled with a variety of...
One-dimensional (1D) atomic chains of CsI were previously reported in double-walled carbon nanotubes...