Considering the ever-increasing interest in metal-free materials, some potential chemical applications of quasi-molecular boron nitride (BN) derivatives were tested. Specifically, the behavior of BN fragments was analyzed when given defects, producing local electron density changes, were introduced by using topological engineering approaches. The inserted structural faults were Schottky-like divacancy (BN-d) defects, assembled in the fragment frame by the subtraction of one pair of B and N atoms or Stone-Wales (SW) defects. This study is aimed at highlighting the role of these important classes of defects in BN materials hypothesizing their future use in H-2-based processes, related to either (i) H-2 activation or (ii) H-2 production, from ...
Hexagonal boron nitride (hBN) is a wide gap 2D layered material with good insulating properties. Int...
Formation of defects in hexagonal and cubic boron nitride (h -BN and c -BN, respectively) under low-...
In a range of temperatures from 1500 to 2500 K, processes of transformation between various nanomete...
Considering the ever-increasing interest in metal-free materials, some potential chemical applicatio...
The properties of epitaxially grown 2D materials such as hexagonal boron nitride (hBN) and graphene ...
The processes of mechanical activation of a hexagonal boron nitride (h-BN) and its reactivity upon i...
Density functional theory simulations studied molecular (Phenol, pyridine, oxygen, and carbon monoxi...
The adsorption of H2O, NH3 and HCOOH as polar molecules and C6H6 and CH4 as non-polar ones on a seri...
Metal-supported hexagonal boron nitride monolayers (h-BN/M) are emerging as new potential electrocat...
Two dimensional (2D) materials offer excellent opportunities for application as catalysts for energy...
The implementation and effectiveness of the adsorption of H2 on Transition Metal-doped boron nitride...
We have used scanning tunneling microscopy (STM) to investigate two types of hydrogen defect structu...
We present a new reactive force field ReaxFFHBN derived to accurately model large molecular and cond...
Catalytic processes are critical steps in numerous industrial processes. The discovery of high react...
Collision and adsorption of hydrogen with high incident kinetic energies on a single-walled boron ni...
Hexagonal boron nitride (hBN) is a wide gap 2D layered material with good insulating properties. Int...
Formation of defects in hexagonal and cubic boron nitride (h -BN and c -BN, respectively) under low-...
In a range of temperatures from 1500 to 2500 K, processes of transformation between various nanomete...
Considering the ever-increasing interest in metal-free materials, some potential chemical applicatio...
The properties of epitaxially grown 2D materials such as hexagonal boron nitride (hBN) and graphene ...
The processes of mechanical activation of a hexagonal boron nitride (h-BN) and its reactivity upon i...
Density functional theory simulations studied molecular (Phenol, pyridine, oxygen, and carbon monoxi...
The adsorption of H2O, NH3 and HCOOH as polar molecules and C6H6 and CH4 as non-polar ones on a seri...
Metal-supported hexagonal boron nitride monolayers (h-BN/M) are emerging as new potential electrocat...
Two dimensional (2D) materials offer excellent opportunities for application as catalysts for energy...
The implementation and effectiveness of the adsorption of H2 on Transition Metal-doped boron nitride...
We have used scanning tunneling microscopy (STM) to investigate two types of hydrogen defect structu...
We present a new reactive force field ReaxFFHBN derived to accurately model large molecular and cond...
Catalytic processes are critical steps in numerous industrial processes. The discovery of high react...
Collision and adsorption of hydrogen with high incident kinetic energies on a single-walled boron ni...
Hexagonal boron nitride (hBN) is a wide gap 2D layered material with good insulating properties. Int...
Formation of defects in hexagonal and cubic boron nitride (h -BN and c -BN, respectively) under low-...
In a range of temperatures from 1500 to 2500 K, processes of transformation between various nanomete...