Increasing intercalation of Li-ions brings about distortive structural transformations in several canonical intercalation hosts. Such phase transformations require the energy dissipative creation and motion of dislocations at the interface between the parent lattice and the nucleated Li-rich phase. Phase inhomogeneities within particles and across electrodes give rise to pronounced stress gradients, which can result in capacity fading. How such transformations alter Li-ion diffusivities remains much less explored. In this article, we use layered V2O5 as an intercalation host and examine the structural origins of the evolution of Li-ion diffusivities with phase progression upon electrochemical lithiation. Galvanostatic intermittent titration...
The diffusion constant of Li in electrode materials is a key aspect of the rate capability of rechar...
Traditional approaches to identify ion-transport pathways often presume equal probability of occupyi...
Intercalation processes and corresponding diffusion paths of Li ions into spinel-type structured Li1...
Substantial improvements in cycle life, rate performance, accessible voltage, and reversible capacit...
Electrochemical reactions within Li-ion batteries occur far from equilibrium and are accompanied by ...
The rapid insertion and extraction of Li ions from a cathode material is imperative for the function...
Understanding the diffusion mechanisms of Li ions through host materials and the resulting phase evo...
The invention of rechargeable batteries has dramatically changed our landscapes and lives, underpinn...
The scarce inventory of compounds that allow for diffusion of multivalent cations at reasonable rate...
The transport of intercalated Li cations in oxide materials comprises two aspects, ion diffusion and...
Lithium-rich layered oxides (LLOs) are considered promising cathode materials for lithium-ion batter...
We perform first-principles investigations of thermally activated phase transitions and diffusion in...
Layered intercalation compounds are the dominant cathode materials for rechargeable Li-ion batteries...
Phase transitions play a crucial role in Li-ion battery electrodes being decisive for both the power...
International audienceUnderstanding the kinetic limitations of intercalation reactions is essential ...
The diffusion constant of Li in electrode materials is a key aspect of the rate capability of rechar...
Traditional approaches to identify ion-transport pathways often presume equal probability of occupyi...
Intercalation processes and corresponding diffusion paths of Li ions into spinel-type structured Li1...
Substantial improvements in cycle life, rate performance, accessible voltage, and reversible capacit...
Electrochemical reactions within Li-ion batteries occur far from equilibrium and are accompanied by ...
The rapid insertion and extraction of Li ions from a cathode material is imperative for the function...
Understanding the diffusion mechanisms of Li ions through host materials and the resulting phase evo...
The invention of rechargeable batteries has dramatically changed our landscapes and lives, underpinn...
The scarce inventory of compounds that allow for diffusion of multivalent cations at reasonable rate...
The transport of intercalated Li cations in oxide materials comprises two aspects, ion diffusion and...
Lithium-rich layered oxides (LLOs) are considered promising cathode materials for lithium-ion batter...
We perform first-principles investigations of thermally activated phase transitions and diffusion in...
Layered intercalation compounds are the dominant cathode materials for rechargeable Li-ion batteries...
Phase transitions play a crucial role in Li-ion battery electrodes being decisive for both the power...
International audienceUnderstanding the kinetic limitations of intercalation reactions is essential ...
The diffusion constant of Li in electrode materials is a key aspect of the rate capability of rechar...
Traditional approaches to identify ion-transport pathways often presume equal probability of occupyi...
Intercalation processes and corresponding diffusion paths of Li ions into spinel-type structured Li1...