The phase stability of binary Fe and Mn olivine materials is extensively studied with temperature-controlled in situ X-ray diffraction (XRD) for various Fe/Mn ratios and state of charges (SOCs). We identify that the thermal behavior of partially charged olivine materials is sensitively affected by the Fe/Mn ratio in the crystal. While Fe-rich binary olivine materials readily formed a solid solution phase of Li1-yFe1-xMnxPO4 near room temperature or with only slight heating, the Mn-rich binary olivine retained its two-phase characteristic up to ca. 250 degrees C before decomposition into non-olivine phases. The thermal stability and decomposition mechanism of fully delithiated olivine materials are more sensitively affected by the Fe/Mn rati...
The thermal stability of sol–gel synthesized Li12DM0.5Mn1.5O4 (M = Fe, Co, Ni) electrodes with diffe...
The in-depth study of the multicomponent effect Oil the structural and electrochemical properties of...
A new olivine composition (i.e., LiFe0.25Mn0.5Co0.25PO4) is proposed as electrode material with incr...
Olivine electrodes have been extensively studied as an important class of cathode materials for lith...
We present an analysis of the thermal reduction of delithiated LiMnPO4 and LiFePO4 based on the quar...
Carbon-coated LiMnxFe1-xPO4 (x = 0, 0.5 and 1) is fully delithiated using NO2BF4 oxidant to investig...
We present an analysis of the thermal reduction of delithiated LiMnPO4 and LiFePO4 based on the quar...
The structural evolution of multi-component olivines upon delithiation and lithiation was investigat...
Using first-principles calculations, we study the effect of cation substitution on the transition-me...
The structural evolution of multi-component olivines upon delithiation and lithiation was investigat...
The phase stability of Li1-xMnPO4 (0 <= x <= 1) is investigated in this study for different Li compo...
The electrochemical properties and phase stability of the multi-component olivine compound LiMn(1/3)...
The remarkable thermal stability of LiFePO{sub 4} and its charged counterpart, FePO{sub 4}, have bee...
Isothermal acid solution calorimetry was employed to investigate the relative thermochemical stabili...
A new olivine composition (i.e., LiFe0.25Mn0.5Co0.25PO4) is proposed as electrode material with incr...
The thermal stability of sol–gel synthesized Li12DM0.5Mn1.5O4 (M = Fe, Co, Ni) electrodes with diffe...
The in-depth study of the multicomponent effect Oil the structural and electrochemical properties of...
A new olivine composition (i.e., LiFe0.25Mn0.5Co0.25PO4) is proposed as electrode material with incr...
Olivine electrodes have been extensively studied as an important class of cathode materials for lith...
We present an analysis of the thermal reduction of delithiated LiMnPO4 and LiFePO4 based on the quar...
Carbon-coated LiMnxFe1-xPO4 (x = 0, 0.5 and 1) is fully delithiated using NO2BF4 oxidant to investig...
We present an analysis of the thermal reduction of delithiated LiMnPO4 and LiFePO4 based on the quar...
The structural evolution of multi-component olivines upon delithiation and lithiation was investigat...
Using first-principles calculations, we study the effect of cation substitution on the transition-me...
The structural evolution of multi-component olivines upon delithiation and lithiation was investigat...
The phase stability of Li1-xMnPO4 (0 <= x <= 1) is investigated in this study for different Li compo...
The electrochemical properties and phase stability of the multi-component olivine compound LiMn(1/3)...
The remarkable thermal stability of LiFePO{sub 4} and its charged counterpart, FePO{sub 4}, have bee...
Isothermal acid solution calorimetry was employed to investigate the relative thermochemical stabili...
A new olivine composition (i.e., LiFe0.25Mn0.5Co0.25PO4) is proposed as electrode material with incr...
The thermal stability of sol–gel synthesized Li12DM0.5Mn1.5O4 (M = Fe, Co, Ni) electrodes with diffe...
The in-depth study of the multicomponent effect Oil the structural and electrochemical properties of...
A new olivine composition (i.e., LiFe0.25Mn0.5Co0.25PO4) is proposed as electrode material with incr...