The structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been studied by first-principles calculations. The Li/Na adsorption on single CF layer and intercalated into bulk CF have been calculated. The better cycling performance of Na intercalation into the CF cathode, comparing to that of Li intercalation, is attributed to the different strength and characteristics of the Li-F and Na-F interactions. The interactions between Li and F are stronger and more localized than those between Na and F. The strong and localized Coulomb attraction between Li and F atoms breaks the C−F bonds and pulls the F atoms away, and graphene sheets are formed upon Li intercalation
Adsorption of Li and Na on pristine and defective graphene and graphene oxide (GO) is studied using ...
Texto completo: acesso restrito. p. 1-6This work investigates, using first-principles calculations, ...
[[abstract]]c2003 Elsevier - The intercalation of Li into layer-structure materials is closely compa...
ABSTRACTThe structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been ...
Contrary to a wide-spread belief that alkali metal (AM) atoms intercalated into layered materials fo...
Graphite is the most widely used anode material for Li-ion batteries and is also considered a promis...
Modeling layered intercalation compounds from first principles poses a problem, as many of their pro...
First-principles calculations were done to examine the energetics of alkali metal intercalation into...
The insertion of guest species in graphite is the key feature utilized in applications ranging from ...
The structural, energetic, and electronic properties of the Li/graphite system are studied through d...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
Understanding Li+ transfer at graphite-electrolyte interfaces is key to the development of next-gene...
We report on the energetics of intercalation of lithium, sodium and potassium in graphite by density...
We present an ab initio study of the thermodynamics and kinetics of Li [subscript x]C[subscript 6], ...
Li-ion batteries have been extensively examined and are key technology in modern society. However, i...
Adsorption of Li and Na on pristine and defective graphene and graphene oxide (GO) is studied using ...
Texto completo: acesso restrito. p. 1-6This work investigates, using first-principles calculations, ...
[[abstract]]c2003 Elsevier - The intercalation of Li into layer-structure materials is closely compa...
ABSTRACTThe structure evolution of fluorinated graphite (CFx) upon the Li/Na intercalation has been ...
Contrary to a wide-spread belief that alkali metal (AM) atoms intercalated into layered materials fo...
Graphite is the most widely used anode material for Li-ion batteries and is also considered a promis...
Modeling layered intercalation compounds from first principles poses a problem, as many of their pro...
First-principles calculations were done to examine the energetics of alkali metal intercalation into...
The insertion of guest species in graphite is the key feature utilized in applications ranging from ...
The structural, energetic, and electronic properties of the Li/graphite system are studied through d...
The intercalation of lithium ions into graphite electrode is the key underlying mechanism of modern ...
Understanding Li+ transfer at graphite-electrolyte interfaces is key to the development of next-gene...
We report on the energetics of intercalation of lithium, sodium and potassium in graphite by density...
We present an ab initio study of the thermodynamics and kinetics of Li [subscript x]C[subscript 6], ...
Li-ion batteries have been extensively examined and are key technology in modern society. However, i...
Adsorption of Li and Na on pristine and defective graphene and graphene oxide (GO) is studied using ...
Texto completo: acesso restrito. p. 1-6This work investigates, using first-principles calculations, ...
[[abstract]]c2003 Elsevier - The intercalation of Li into layer-structure materials is closely compa...