The structural and electronic properties of the intercalation compound LixSnO2 (x = 1/16, 1/8, 1/4, 1/2, 1) as well as the inherent diffusion mechanism of Li ion into the rutile SnO2 were investigated by means of periodic density functional calculations. Optimized structural parameters, cohesive energies, electronic band structure, and density-of-states and Mulliken charges for the LixSnO2 system at different Li ordering for each Li content are reported. The energetic profiles for the Li diffusion process into rutile SnO2 are also presented. Our calculation indicates substantial host distortion around intercalation sites, predominantly along the ab-planes. These deformations are found to be related to the soft B-1g, E-u, A(2g), and A(1g) vi...
We have investigated the diffusion mechanisms of Li-ion in amorphous lithium phosphite (LiPO3) with ...
In this work, Li doped TiO2(B) was modelled throughout the implementation of density functional theo...
Lithium-ion mobility in solid-state systems is an important field with significance for a range of t...
The structural and electronic properties of the intercalation compound LixSnO2 (x = 1/16, 1/8, 1/4, ...
The structural and electronic properties of the intercalation compound LixSnO2 (x = 1/16, 1/8, 1/4, ...
The structural and electronic properties of the intercalation compound Li<sub><i>x</i></sub>SnO<sub>...
We utilized first-principles plane-wave calculations to obtain insight into the role of Sn-doping on...
We utilized first-principles plane-wave calculations to obtain insight into the role of Sn-doping on...
With the increased demand for high-rate performance Li-ion batteries, it is necessary to find availa...
With the increased demand for high-rate performance Li-ion batteries, it is necessary to find availa...
TiO2(B) has potential as an anode material for Li-ion batteries. Although theoretical and experiment...
Lithium transition-metal oxides (LiTMO₂) are currently the preferred cathode materials for secondary...
In the present work, taking advantage of aberration-corrected scanning transmission electron microsc...
Intercalation processes and corresponding diffusion paths of Li ions into spinel-type structured Li1...
Tin-based oxide Li2SnO3 has attracted considerable interest as a promising cathode material for pote...
We have investigated the diffusion mechanisms of Li-ion in amorphous lithium phosphite (LiPO3) with ...
In this work, Li doped TiO2(B) was modelled throughout the implementation of density functional theo...
Lithium-ion mobility in solid-state systems is an important field with significance for a range of t...
The structural and electronic properties of the intercalation compound LixSnO2 (x = 1/16, 1/8, 1/4, ...
The structural and electronic properties of the intercalation compound LixSnO2 (x = 1/16, 1/8, 1/4, ...
The structural and electronic properties of the intercalation compound Li<sub><i>x</i></sub>SnO<sub>...
We utilized first-principles plane-wave calculations to obtain insight into the role of Sn-doping on...
We utilized first-principles plane-wave calculations to obtain insight into the role of Sn-doping on...
With the increased demand for high-rate performance Li-ion batteries, it is necessary to find availa...
With the increased demand for high-rate performance Li-ion batteries, it is necessary to find availa...
TiO2(B) has potential as an anode material for Li-ion batteries. Although theoretical and experiment...
Lithium transition-metal oxides (LiTMO₂) are currently the preferred cathode materials for secondary...
In the present work, taking advantage of aberration-corrected scanning transmission electron microsc...
Intercalation processes and corresponding diffusion paths of Li ions into spinel-type structured Li1...
Tin-based oxide Li2SnO3 has attracted considerable interest as a promising cathode material for pote...
We have investigated the diffusion mechanisms of Li-ion in amorphous lithium phosphite (LiPO3) with ...
In this work, Li doped TiO2(B) was modelled throughout the implementation of density functional theo...
Lithium-ion mobility in solid-state systems is an important field with significance for a range of t...