The conversion that occurs from layered LiMnO2 to spinel on electrochemical cycling has been studied by neutron diffraction and NMR. Neutron diffraction results indicate that the tetrahedral sites in the Li layers that share faces with octahedral sites in the transition metal layers are occupied even following the first charge to 4.6 V. NMR results are consistent with the conversion from the monoclinic, Jahn-Teller distorted, to the rhombohedral, layered phase on charging. On subsequent discharging, clear evidence for the monoclinic phase is seen by NMR indicating the presence of Jahn-Teller distorted domains in the material at 3.5 V and below. The fraction of monoclinic phase decreases gradually as a function of cycle number and disappears...
Local structural changes in LiMn1.5Ni0.5O4 cathode material were investigated by X-ray absorption sp...
A series of compounds Li1+yMn2-xMâ?² xO4 (xâ?¤0.1;yâ?¤0.02), have been synthesised by doping the par...
Li2MnO3 is an important parent component in lithium- and manganese-rich layered oxides (LMRs), which...
The conversion upon electrochemical cycling from a layered structure to a spinel in nonstoichiometri...
The mechanism of lithium intercalation in layered LiMnO2 has been investigated by combining data fro...
Electrode materials of the formula LiMnO2 were prepared by an ion-exchange process from alpha-NaMnO2...
A combination of neutron diffraction (ND), Li-6 magic-angle spinning NMR, electrochemistry, and firs...
International audienceIn the last few decades Li-ion batteries changed the way we store energy, beco...
International audienceIn situ neutron diffraction (ND) during battery operation is becoming a promis...
Layered Li-x(Mn1-yCoy)O-2 can deliver a discharge capacity on cycling of 200 mA h g(-1) at 0.1 mA cm...
Recently Armstrong and Bruce ' reported a layered modification of lithium manganese oxide, LiMn...
The layered oxide compounds xLi2MnO3·(1 - x)LiMO2 (M=Ni, Mn, Co) are of great interest as positive e...
HT-LiMnO2 was prepared by a solid-state reaction at 900 °C. Electrochemical charge–discharge cycling...
Changing the synthesis conditions of layered stoichiometric LiMnO2 (O3 structure) induces difference...
Orthorhombic LiMnO2 exhibits complex magnetic behavior. In addition to short- and long-range antifer...
Local structural changes in LiMn1.5Ni0.5O4 cathode material were investigated by X-ray absorption sp...
A series of compounds Li1+yMn2-xMâ?² xO4 (xâ?¤0.1;yâ?¤0.02), have been synthesised by doping the par...
Li2MnO3 is an important parent component in lithium- and manganese-rich layered oxides (LMRs), which...
The conversion upon electrochemical cycling from a layered structure to a spinel in nonstoichiometri...
The mechanism of lithium intercalation in layered LiMnO2 has been investigated by combining data fro...
Electrode materials of the formula LiMnO2 were prepared by an ion-exchange process from alpha-NaMnO2...
A combination of neutron diffraction (ND), Li-6 magic-angle spinning NMR, electrochemistry, and firs...
International audienceIn the last few decades Li-ion batteries changed the way we store energy, beco...
International audienceIn situ neutron diffraction (ND) during battery operation is becoming a promis...
Layered Li-x(Mn1-yCoy)O-2 can deliver a discharge capacity on cycling of 200 mA h g(-1) at 0.1 mA cm...
Recently Armstrong and Bruce ' reported a layered modification of lithium manganese oxide, LiMn...
The layered oxide compounds xLi2MnO3·(1 - x)LiMO2 (M=Ni, Mn, Co) are of great interest as positive e...
HT-LiMnO2 was prepared by a solid-state reaction at 900 °C. Electrochemical charge–discharge cycling...
Changing the synthesis conditions of layered stoichiometric LiMnO2 (O3 structure) induces difference...
Orthorhombic LiMnO2 exhibits complex magnetic behavior. In addition to short- and long-range antifer...
Local structural changes in LiMn1.5Ni0.5O4 cathode material were investigated by X-ray absorption sp...
A series of compounds Li1+yMn2-xMâ?² xO4 (xâ?¤0.1;yâ?¤0.02), have been synthesised by doping the par...
Li2MnO3 is an important parent component in lithium- and manganese-rich layered oxides (LMRs), which...