Using first-principles calculations, we study the effect of cation substitution on the transition-metal sublattice in phospho-olivines, with special attention given to the Li[subscript x](Fe[subscript 1−y]Mn[subscript y])PO[subscript 4] system. We use a cluster expansion model derived from first-principles with Monte Carlo simulations to calculate finite-T phase diagrams, voltage curves, and solubility limits of the system. The phase diagram of Li[subscript x](Fe[subscript 1−y]Mn[subscript y])PO[subscript 4] shows two low-temperature miscibility gaps separated by a solid solution phase centered at Li composition x≈y, which corresponds to a state where most Fe ions are oxidized and most Mn are not. This intermediate low-T solid solution is s...
The design of novel cathode materials for Li-ion batteries would greatly benefit from accurate first...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...
This thesis focuses broadly on characterizing and understanding the Li intercalation mechanism in ph...
The electrochemical properties and phase stability of the multi-component olivine compound LiMn(1/3)...
The electrochemical properties and phase stability of the multi-component olivine compound LiMn(1/3)...
Olivine-structured LiMPO4 materials (M = Mn, Fe, Co, Ni, or mixtures) exhibit higher redox potential...
The in-depth study of the multicomponent effect Oil the structural and electrochemical properties of...
The in-depth study of the multicomponent effect Oil the structural and electrochemical properties of...
The electrochemical properties and phase stabilities of the multi-component olivine compound LiMn1/3...
The recent infatuation for LiFePO4 as positive electrode material in Li-ion batteries has prompted a...
Abstract Phase separation during the lithiation of redox-active materials is a critical factor affec...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
The design of novel cathode materials for Li-ion batteries would greatly benefit from accurate first...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...
This thesis focuses broadly on characterizing and understanding the Li intercalation mechanism in ph...
The electrochemical properties and phase stability of the multi-component olivine compound LiMn(1/3)...
The electrochemical properties and phase stability of the multi-component olivine compound LiMn(1/3)...
Olivine-structured LiMPO4 materials (M = Mn, Fe, Co, Ni, or mixtures) exhibit higher redox potential...
The in-depth study of the multicomponent effect Oil the structural and electrochemical properties of...
The in-depth study of the multicomponent effect Oil the structural and electrochemical properties of...
The electrochemical properties and phase stabilities of the multi-component olivine compound LiMn1/3...
The recent infatuation for LiFePO4 as positive electrode material in Li-ion batteries has prompted a...
Abstract Phase separation during the lithiation of redox-active materials is a critical factor affec...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
The design of novel cathode materials for Li-ion batteries would greatly benefit from accurate first...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...
In this study we address the Li-ion de-insertion/insertion mechanisms from/into the lattice of the m...