Lithium carbide, Li2C2, is a fascinating material that combines strong covalent and weak ionic bonding resulting in a wide range of unusual properties. The mechanism of its phase transition from the ground-state orthorhombic (Immm) to the high-temperature cubic (Fm (3) over barm) crystal structure is not well understood and here we elucidate it with help of first-principles calculations. We show that stabilization of the cubic phase is a result of a temperature-induced disorientation of the C-C dumbbells and their further thermal rotations. Due to these rotations rather large deviatoric stress, which is associated with the dumbbell alignment along one of the crystallographic axes, averages out making the cubic structure mechanically stable....
We report large-scale first-principles simulations of melting of four different phases of Li at pres...
The immense interest in carbon nanomaterials continues to stimulate intense research activities aime...
We report on the dynamic and structural characterization of lithium metasilicate Li2SiO3, a network-...
Lithium carbide, Li2C2, is a fascinating material that combines strong covalent and weak ionic bondi...
We studied the binary carbide systems Li2C2 and CaC2 at high pressure using an evolutionary and ab i...
We studied the binary carbide systems Li<sub>2</sub>C<sub>2</sub> and CaC<sub>2</sub> at high pressu...
Alkali (A) and alkaline earth (AE) metals can form carbides and intercalated graphites with carbon. ...
We perform first-principles investigations of thermally activated phase transitions and diffusion in...
Novel lithium-based materials for carbon capture and storage (CCS) applications have emerged as a pr...
We present a low-temperature structural model for lithium imide (Li[subscript 2]NH) that is consiste...
On the basis of ab initio molecular dynamics simulations, we propose that the Fm3̄m symmetry of the ...
We present an ab initio study of the thermodynamics and kinetics of Li [subscript x]C[subscript 6], ...
A series of electronic and structural transitions are predicted in molten lithium from first princip...
We have studied temperature-induced superionic phase transition in Li2S, which is one of the most p...
Two high-pressure insulating phases of lithium were predicted using random search and evolutionary a...
We report large-scale first-principles simulations of melting of four different phases of Li at pres...
The immense interest in carbon nanomaterials continues to stimulate intense research activities aime...
We report on the dynamic and structural characterization of lithium metasilicate Li2SiO3, a network-...
Lithium carbide, Li2C2, is a fascinating material that combines strong covalent and weak ionic bondi...
We studied the binary carbide systems Li2C2 and CaC2 at high pressure using an evolutionary and ab i...
We studied the binary carbide systems Li<sub>2</sub>C<sub>2</sub> and CaC<sub>2</sub> at high pressu...
Alkali (A) and alkaline earth (AE) metals can form carbides and intercalated graphites with carbon. ...
We perform first-principles investigations of thermally activated phase transitions and diffusion in...
Novel lithium-based materials for carbon capture and storage (CCS) applications have emerged as a pr...
We present a low-temperature structural model for lithium imide (Li[subscript 2]NH) that is consiste...
On the basis of ab initio molecular dynamics simulations, we propose that the Fm3̄m symmetry of the ...
We present an ab initio study of the thermodynamics and kinetics of Li [subscript x]C[subscript 6], ...
A series of electronic and structural transitions are predicted in molten lithium from first princip...
We have studied temperature-induced superionic phase transition in Li2S, which is one of the most p...
Two high-pressure insulating phases of lithium were predicted using random search and evolutionary a...
We report large-scale first-principles simulations of melting of four different phases of Li at pres...
The immense interest in carbon nanomaterials continues to stimulate intense research activities aime...
We report on the dynamic and structural characterization of lithium metasilicate Li2SiO3, a network-...