Understanding the interaction of water and graphene is crucial for various applications such as water purification, desalination, and electrocatalysis. Experimental and theoretical studies have already investigated water adsorption on N- and B-doped graphene. However, there are no reports available that elucidate the influences of the N and B doping content in graphene on the microscopic geometrical structure and the electronic properties of the adsorbed water. Thus, this work is devoted to solving this problem using self-consistent van der Waals density functional theory calculations. The N and B doping contents of 0.0, 3.1, 6.3, and 9.4% were considered. The results showed that the binding energy of water increases almost linearly as a fu...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
We investigate the interaction between water and metal-supported graphene through van der Waals dens...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
We investigate structural and electronic properties of water molecules adsorbed on graphene by using...
p. 12348–12356We have investigated the structure, adsorption, electronic states, and charge transfer...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
We have studied how water modifies the surface of graphene and in particular how the surface conduct...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
We investigate the interaction between water and metal-supported graphene through van der Waals dens...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
We investigate structural and electronic properties of water molecules adsorbed on graphene by using...
p. 12348–12356We have investigated the structure, adsorption, electronic states, and charge transfer...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
We have studied how water modifies the surface of graphene and in particular how the surface conduct...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
Water monomer adsorption on graphene is examined with state-of-the- art electronic structure approac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...