Since the discovery of the reversible intercalation of lithium-ion materials associated with promising electrochemical properties, lithium-containing materials have attracted attention in the research and development of effective cathode materials for lithium-ion batteries. Despite various studies on synthesis, and electrochemical properties of lithium-based materials, fairly little fundamental optical and thermodynamic studies are available in the literature. Here, we report on the structure, optical, magnetic, and thermodynamic properties of Li-excess disordered rocksalt, Li1.3Nb0.3Mn0.4O2 (LNMO) which was comprehensively studied using powder X-ray diffraction, transient absorption spectroscopy, magnetic susceptibility, and low-temperatur...
An increasing interest has developed around Li-Mn-O spinels due to their potential use as positive e...
Understanding the kinetic implication of solid-solution vs. biphasic reaction pathways is critical f...
Rietveld refinement of the crystal and magnetic structures of LixMnO2 (x = 0.98, 1.00, 1.02) are per...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 1...
Cation-ordered Li[Ni1/2Mn3/2]O-4 with a P4(3)32 space group (CO-LNMO) and "cation-disordered'' (CDO)...
International audienceThe spinel of nominal composition Li4Mn5O12 has been prepared by the wet chemi...
A disordered rocksalt Li-excess cathode material, Li1.25Nb0.25Mn0.5O2, was synthesized and investiga...
A disordered rocksalt Li-excess cathode material, Li1.25Nb0.25Mn0.5O2, was synthesized and investiga...
A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reactio...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Cation order, with a local structure related to ?-LiFeO2, is observed in the nominally cation-disord...
Li1+xMn2xO4 is one of the most promising candidates as high performance cathode for lithium ion batt...
An increasing interest has developed around Li-Mn-O spinels due to their potential use as positive e...
Understanding the kinetic implication of solid-solution vs. biphasic reaction pathways is critical f...
Rietveld refinement of the crystal and magnetic structures of LixMnO2 (x = 0.98, 1.00, 1.02) are per...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 1...
Cation-ordered Li[Ni1/2Mn3/2]O-4 with a P4(3)32 space group (CO-LNMO) and "cation-disordered'' (CDO)...
International audienceThe spinel of nominal composition Li4Mn5O12 has been prepared by the wet chemi...
A disordered rocksalt Li-excess cathode material, Li1.25Nb0.25Mn0.5O2, was synthesized and investiga...
A disordered rocksalt Li-excess cathode material, Li1.25Nb0.25Mn0.5O2, was synthesized and investiga...
A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reactio...
LiMn2O4 spinel is a promising cathode material for secondary lithium-ion batteries. Despite showing ...
Cation order, with a local structure related to ?-LiFeO2, is observed in the nominally cation-disord...
Li1+xMn2xO4 is one of the most promising candidates as high performance cathode for lithium ion batt...
An increasing interest has developed around Li-Mn-O spinels due to their potential use as positive e...
Understanding the kinetic implication of solid-solution vs. biphasic reaction pathways is critical f...
Rietveld refinement of the crystal and magnetic structures of LixMnO2 (x = 0.98, 1.00, 1.02) are per...