Titanium doping in lithium manganese oxide spinels was shown to be beneficial for the structural stability of the potential Li-ion battery cathode materials LiTixMn2−xO4, 0.2 ≤ x ≤ 1.5, yet the distribution of Li/Ti/Mn in the structure and the cation oxidation states, both pivotal for the electrochemical performance of the material, are not fully understood. Our work investigates the changes in the local ordering of the ions throughout this series by using a combination of 7Li NMR spectroscopy and ab initio density functional theory calculations. The 7Li NMR shifts are first calculated for a variety of Li configurations with different numbers and arrangements of Mn ions in the first metal coordination shell and then decomposed into Li−O−Mn ...
This work is devoted to the study of LiMO2 et LiM2O4 (M: transition metal) intercalation compounds u...
DOI: 10.1063/1.3073660The two B-site ions Mn3+ and Mn4+ in the stoichiometric spinel structure LiMn2...
Unraveling the atomic and electronic processes in modern energy materials is a key to advances in ma...
Titanium doping in lithium manganese oxide spinels was shown to be beneficial for the structural sta...
The spinel-structured lithium manganese oxide (LiMn2O4) is a material currently used as cathode for ...
International audienceWe present a Li-7 MAS NMR study carried out before (pristine material) and dur...
The lithium ion battery cathode material β-VOPO4 is capable of intercalating more than one Li ion pe...
The local structural and electronical transformations occurring along the first charge and discharge...
We determined how Li doping affects the Ni/Mn ordering in high-voltage spinel LiNi0.5Mn1.5O4(LNMO) b...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
Experimental techniques that probe the local environment around O in paramagnetic Li-ion cathode mat...
Ce travail de thèse s'inscrit dans le cadre général de l'étude des matériaux d'intercalation de type...
The two B-site ions Mn3+ and Mn4+ in the stoichiometric spinel structure LiMn2O4 form a complex, col...
Lithium ion (Li ion) battery technology has enabled a complete revolution in consumer electronics an...
This work is devoted to the study of LiMO2 et LiM2O4 (M: transition metal) intercalation compounds u...
DOI: 10.1063/1.3073660The two B-site ions Mn3+ and Mn4+ in the stoichiometric spinel structure LiMn2...
Unraveling the atomic and electronic processes in modern energy materials is a key to advances in ma...
Titanium doping in lithium manganese oxide spinels was shown to be beneficial for the structural sta...
The spinel-structured lithium manganese oxide (LiMn2O4) is a material currently used as cathode for ...
International audienceWe present a Li-7 MAS NMR study carried out before (pristine material) and dur...
The lithium ion battery cathode material β-VOPO4 is capable of intercalating more than one Li ion pe...
The local structural and electronical transformations occurring along the first charge and discharge...
We determined how Li doping affects the Ni/Mn ordering in high-voltage spinel LiNi0.5Mn1.5O4(LNMO) b...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Substitution of iron by other transition metals within the remarkably stable olivine framework is of...
Experimental techniques that probe the local environment around O in paramagnetic Li-ion cathode mat...
Ce travail de thèse s'inscrit dans le cadre général de l'étude des matériaux d'intercalation de type...
The two B-site ions Mn3+ and Mn4+ in the stoichiometric spinel structure LiMn2O4 form a complex, col...
Lithium ion (Li ion) battery technology has enabled a complete revolution in consumer electronics an...
This work is devoted to the study of LiMO2 et LiM2O4 (M: transition metal) intercalation compounds u...
DOI: 10.1063/1.3073660The two B-site ions Mn3+ and Mn4+ in the stoichiometric spinel structure LiMn2...
Unraveling the atomic and electronic processes in modern energy materials is a key to advances in ma...