Although graphite and hexagonal form of BN (h-BN) are isoelectronic and have very similar lattice structures, it has been very difficult to intercalate h-BN while there are hundreds of intercalation compounds of graphite. We have done a comparative first principles investigation of lithium intercalation of graphite and hexagonal boron nitride to provide clues for the difficulty of h-BN intercalation. In particular lattice structure, cohesive energy, formation enthalpy, charge transfer and electronic structure of both intercalation compounds are calculated in the density functional theory framework with local density approximation to the exchange-correlation energy. The calculated formation enthalpy of the considered forms of Li intercalated...
ABSTRACTThe structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been ...
The structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been studied ...
Organic-inorganic halide perovskites are attracting extraordinary attention in the field of energy m...
By using the local-density approximation in density functional theory, we explore the possibility of...
Modeling layered intercalation compounds from first principles poses a problem, as many of their pro...
ABSTRACT: Graphite and hexagonal boron nitride (h-BN) are two prominent members of the family of lay...
We use first-principles calculations within the density functional theory (DFT) to explore the elect...
Hexagonal boron nitride (h-BN) is an insulating compound that is structurally similar to graphite. L...
We report on the energetics of intercalation of lithium, sodium and potassium in graphite by density...
The crystal structures of the layered host lattices, [β-ZrNBr and [β- HfNCl have been determined. Th...
Ab initio electronic-structure calculations are performed using density functional theory (DFT) wit...
First-principles calculations were done to examine the energetics of alkali metal intercalation into...
Contrary to a wide-spread belief that alkali metal (AM) atoms intercalated into layered materials fo...
By performing first-principles calculations, we studied hexagonal-boron-nitride (hBN)-supported grap...
Boron nitride (BN) is a material with outstanding technological promise because of its exceptional t...
ABSTRACTThe structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been ...
The structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been studied ...
Organic-inorganic halide perovskites are attracting extraordinary attention in the field of energy m...
By using the local-density approximation in density functional theory, we explore the possibility of...
Modeling layered intercalation compounds from first principles poses a problem, as many of their pro...
ABSTRACT: Graphite and hexagonal boron nitride (h-BN) are two prominent members of the family of lay...
We use first-principles calculations within the density functional theory (DFT) to explore the elect...
Hexagonal boron nitride (h-BN) is an insulating compound that is structurally similar to graphite. L...
We report on the energetics of intercalation of lithium, sodium and potassium in graphite by density...
The crystal structures of the layered host lattices, [β-ZrNBr and [β- HfNCl have been determined. Th...
Ab initio electronic-structure calculations are performed using density functional theory (DFT) wit...
First-principles calculations were done to examine the energetics of alkali metal intercalation into...
Contrary to a wide-spread belief that alkali metal (AM) atoms intercalated into layered materials fo...
By performing first-principles calculations, we studied hexagonal-boron-nitride (hBN)-supported grap...
Boron nitride (BN) is a material with outstanding technological promise because of its exceptional t...
ABSTRACTThe structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been ...
The structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been studied ...
Organic-inorganic halide perovskites are attracting extraordinary attention in the field of energy m...