Phase transitions play a crucial role in Li-ion battery electrodes being decisive for both the power density and cycle life. The kinetic properties of phase transitions are relatively unexplored and the nature of the phase transition in defective spinel Li4+ xTi5O12 introduces a controversy as the very constant (dis)charge potential, associated with a first-order phase transition, appears to contradict the exceptionally high rate performance associated with a solid-solution reaction. With the present density functional theory study, a microscopic mechanism is put forward that provides deeper insight in this intriguing and technologically relevant material. The local substitution of Ti with Li in the spinel Li4+ xTi5O12 lattice stabilizes th...
The lithium ion battery anode material Lithium-Titanium-Oxide (Li$_4$Ti$_5$O$_{12}$, LTO) exhibits e...
Identifying the structure of electrodes at atomic-scale remains a key challenge but is a fertile rea...
The nature of a phase transition plays an important role in controlling the kinetics of reaction of ...
Phase transitions play a crucial role in Li-ion battery electrodes being decisive for both the power...
The improvement of Li-ion battery performance requires development of models that capture the essent...
In this work, we show that the well-known lithium-ion anode material, Li4Ti5O12, exhibits exceptiona...
The improvement of Li-ion battery performance requires development of models that capture the essent...
© 2021 American Chemical Society. The unstable solid-electrolyte interphase (SEI) on Li anodes is th...
In this work, the Li-ion insertion mechanism in organic electrode materials is investigated through ...
We use first-principles density functional theory (DFT) calculations combined with statistical mecha...
Nanosizing is a frequently applied strategy in recent years to improve storage properties of Li-ion ...
Lithium–titanium-oxide (Li4Ti5O12, LTO) is unique among battery materials due to its exceptional cyc...
Fast-charging batteries typically use electrodes capable of accommodating lithium continuously by me...
Increasing intercalation of Li-ions brings about distortive structural transformations in several ca...
Cathode materials that exhibit phase transitions with large structural rearrangements during electro...
The lithium ion battery anode material Lithium-Titanium-Oxide (Li$_4$Ti$_5$O$_{12}$, LTO) exhibits e...
Identifying the structure of electrodes at atomic-scale remains a key challenge but is a fertile rea...
The nature of a phase transition plays an important role in controlling the kinetics of reaction of ...
Phase transitions play a crucial role in Li-ion battery electrodes being decisive for both the power...
The improvement of Li-ion battery performance requires development of models that capture the essent...
In this work, we show that the well-known lithium-ion anode material, Li4Ti5O12, exhibits exceptiona...
The improvement of Li-ion battery performance requires development of models that capture the essent...
© 2021 American Chemical Society. The unstable solid-electrolyte interphase (SEI) on Li anodes is th...
In this work, the Li-ion insertion mechanism in organic electrode materials is investigated through ...
We use first-principles density functional theory (DFT) calculations combined with statistical mecha...
Nanosizing is a frequently applied strategy in recent years to improve storage properties of Li-ion ...
Lithium–titanium-oxide (Li4Ti5O12, LTO) is unique among battery materials due to its exceptional cyc...
Fast-charging batteries typically use electrodes capable of accommodating lithium continuously by me...
Increasing intercalation of Li-ions brings about distortive structural transformations in several ca...
Cathode materials that exhibit phase transitions with large structural rearrangements during electro...
The lithium ion battery anode material Lithium-Titanium-Oxide (Li$_4$Ti$_5$O$_{12}$, LTO) exhibits e...
Identifying the structure of electrodes at atomic-scale remains a key challenge but is a fertile rea...
The nature of a phase transition plays an important role in controlling the kinetics of reaction of ...