We introduce a computational approach to estimate the hardness and stiffness of diamond surfaces and nanoparticles by studying their elastic response to atomic nanoindentation. Results of our ab initio density functional calculations explain the observed hardness differences between different diamond surfaces and suggest bond stiffening in bare and hydrogenated fragments of cubic diamond and lonsdaleite. The increase in hardness and stiffness can be traced back to bond length reduction especially in bare nanoscale diamond clusters, a result of compression that is driven by the dominant role of the surface tension
Presented are results of our ab initio study of the surface reconstruction and relaxation of (100) s...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
Ab initio (density functional theory) relaxation of nanocrystalline diamond structures of cubic, oct...
The predicted static and dynamical properties of a recently reported 6H polymorph of diamond based o...
Diamond is the stiffest known material. Here we report that nanopolycrystal diamond synthesized by d...
Diamonds have substantial hardness and durability, but attempting to deform diamonds usually results...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
Diamonds have substantial hardness and durability, but attempting to deform diamonds usually results...
Diamonds have substantial hardness and durability, but attempting to deform diamonds usually results...
The ultrathin one-dimensional sp3 diamond nanothreads (NTHs), as successfully synthesised recently, ...
A combined experimental and numerical study on the variation of the elastic properties of defective ...
A combined experimental and numerical study on the variation of the elastic properties of defective ...
The ultrathin one-dimensional sp3 diamond nanothreads (NTHs), as successfully synthesised recently, ...
The ultrathin one-dimensional sp3 diamond nanothreads (NTHs), as successfully synthesised recently, ...
Phase-pure nanocrystalline diamond thin films grown from plasmas of a hydrogen-poor carbon argon gas...
Presented are results of our ab initio study of the surface reconstruction and relaxation of (100) s...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
Ab initio (density functional theory) relaxation of nanocrystalline diamond structures of cubic, oct...
The predicted static and dynamical properties of a recently reported 6H polymorph of diamond based o...
Diamond is the stiffest known material. Here we report that nanopolycrystal diamond synthesized by d...
Diamonds have substantial hardness and durability, but attempting to deform diamonds usually results...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
Diamonds have substantial hardness and durability, but attempting to deform diamonds usually results...
Diamonds have substantial hardness and durability, but attempting to deform diamonds usually results...
The ultrathin one-dimensional sp3 diamond nanothreads (NTHs), as successfully synthesised recently, ...
A combined experimental and numerical study on the variation of the elastic properties of defective ...
A combined experimental and numerical study on the variation of the elastic properties of defective ...
The ultrathin one-dimensional sp3 diamond nanothreads (NTHs), as successfully synthesised recently, ...
The ultrathin one-dimensional sp3 diamond nanothreads (NTHs), as successfully synthesised recently, ...
Phase-pure nanocrystalline diamond thin films grown from plasmas of a hydrogen-poor carbon argon gas...
Presented are results of our ab initio study of the surface reconstruction and relaxation of (100) s...
On the basis of literature ab initio data, we show that diamond nanorods would have a brittle fractu...
Ab initio (density functional theory) relaxation of nanocrystalline diamond structures of cubic, oct...