Due to their porosity and biocompatibility, C-N based graphitic sheets are currently attracting much attention. Here we present our findings on a new structure of a g-C4N3 sheet composed of the tri-ring heptazine-like units, which is energetically more stable, more elastic and isotropic than the previously proposed structure consisting of the single-ring triazines. Dynamics and thermal stability of the new structure are confirmed using phonon spectrum calculations and molecular dynamics simulations. Based on hybrid density functional theory, we demonstrate that the tri-ring unit based g-C4N3 is a semiconductor with a small band gap, sharp optical absorption peaks and high absorption intensity. Although the new structure is nonmagnetic, ferr...
We systematically studied the physical properties of a novel superhard (t-C3N4) and a novel hard (m-...
We systematically studied the physical properties of a novel superhard (t-C3N4) and a novel hard (m-...
Si based sheets have attracted tremendous attention due to their compatibility with the well-develop...
Using density functional theory (DFT), we have explored the structural, electronic, magnetic and opt...
Graphite carbon nitride (g-C3N4) is a new class of N-doped material that exists in 2D and 3D structu...
The electronic and magnetic properties of graphitic carbon nitride (g-C4N3) in both its bulk and con...
In this work, mechanical properties, elastic constants and the strain responses on the electronic pr...
We propose porous C-N-based structures for biocompatible magnetic materials that do not contain even...
Due to its porous structure and light mass the recently synthesized triazine-based graphitic C3N4 (g...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically studied the physical properties of a novel superhard (t-C3N4) and a novel hard (m-...
We systematically studied the physical properties of a novel superhard (t-C3N4) and a novel hard (m-...
Si based sheets have attracted tremendous attention due to their compatibility with the well-develop...
Using density functional theory (DFT), we have explored the structural, electronic, magnetic and opt...
Graphite carbon nitride (g-C3N4) is a new class of N-doped material that exists in 2D and 3D structu...
The electronic and magnetic properties of graphitic carbon nitride (g-C4N3) in both its bulk and con...
In this work, mechanical properties, elastic constants and the strain responses on the electronic pr...
We propose porous C-N-based structures for biocompatible magnetic materials that do not contain even...
Due to its porous structure and light mass the recently synthesized triazine-based graphitic C3N4 (g...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically investigate trends in carbon nitride structures targeting the lowest energy config...
We systematically studied the physical properties of a novel superhard (t-C3N4) and a novel hard (m-...
We systematically studied the physical properties of a novel superhard (t-C3N4) and a novel hard (m-...
Si based sheets have attracted tremendous attention due to their compatibility with the well-develop...