On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fracture force and a zero strain stiffness that exceeds carbon nanotubes for radii greater than about 1-3 nm, depending on the orientation of the diamond nanorod. The energetic stability of diamond nanorods is predicted by molecular modeling to be comparable to single-walled carbon nanotubes. It is concluded that diamond nanorods represent an important and viable target structure for synthesis
Although production of nanowires from various materials is proving very successful, the development ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
The structural properties of carbon nanorods obtained from diamond crystal have been investigated by...
Abstract. Although the nanoscience and nanotechnology surrounding sp2 bonded carbon nanotubes has co...
Since their discovery in 1990, the study of sp² bonded carbon nanotubes has grown into a field of re...
Feasibility of designing composites from carbon nanotubes and nanodiamond clusters is discussed base...
Recent advances in the fabrication and characterization of semiconductor and metallic nanowires are ...
Under high pressure, two layers of graphene may have phase transition. After transition, a new two-d...
Recent advances in the fabrication and characterization of semiconductor and metallic nanowires are ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
Diamond is the stiffest known material. Here we report that nanopolycrystal diamond synthesized by d...
Although production of nanowires from various materials is proving very successful, the development ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
The structural properties of carbon nanorods obtained from diamond crystal have been investigated by...
Abstract. Although the nanoscience and nanotechnology surrounding sp2 bonded carbon nanotubes has co...
Since their discovery in 1990, the study of sp² bonded carbon nanotubes has grown into a field of re...
Feasibility of designing composites from carbon nanotubes and nanodiamond clusters is discussed base...
Recent advances in the fabrication and characterization of semiconductor and metallic nanowires are ...
Under high pressure, two layers of graphene may have phase transition. After transition, a new two-d...
Recent advances in the fabrication and characterization of semiconductor and metallic nanowires are ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
Diamond is the stiffest known material. Here we report that nanopolycrystal diamond synthesized by d...
Although production of nanowires from various materials is proving very successful, the development ...
As a potential building block for the next generation of devices/multifunctional materials that are ...
As a potential building block for the next generation of devices/multifunctional materials that are ...