Thermal treatments under a very wide range of oxygen pressures were used to probe the composition and defect nature of a lithium-overstoichiometric "Lix0CoO2" (x0 > 1) sample using X-ray powder diffraction, 7Li NMR, and electrochemical tests. It was found that at 900 C, under atmospheric and elevated oxygen pressures, the lithium-overstoichiometric sample gradually transformed to stoichiometric LiCoO2 by losing excess lithium in the form of Li2O. In addition, it was shown that the defect associated with Co2+ and oxygen deficiency as reported by Gorshkov et al. and Karelina et al. had a different NMR signature than that present in Li-overstoichiometric samples. Therefore, it is believed that oxygen vacancies are present but Co2+ ions are not...
HT-Lix0Co1-yMgyO2 (where x0 is the Li/(Co + Mg) ratio; x0 = 0.98, 1.0, 1.10; y = 0.0, 0.03, 0.06, an...
While LiCoO2: has been widely studied in the past 15 years as a promising positive electrode materia...
LiCoO<sub>2</sub>, one of the major positive electrode materials for Li-ion batteries, can be synthe...
Stoichiometric high temperature LiCoO2 obtained by long annealing in oxygen was characterized by ele...
extensively used as a positive electrode material for Li-ion batteries over past decades [1]. The co...
XPS analyses (core peaks and valence spectra), under highly controlled conditions, have been carried...
Deterioration mechanisms of LiCoO<sub>2</sub> electrode materials for lithium ion batteries remain u...
High temp. Lix0Co1-yNiyO2 (x0=1.0, 1.10; yr=0.0, 0.03, 0.06, and 0.10) phases were synthesized by so...
Lix0(Co,M)O2 (M = Ni, Mg ; x0 ≥ 1.0) materials used as positive electrode for Li-ion batteries have ...
LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely t...
The 7Li NMR T1 spin-lattice relaxation time is shown to be a very stringent criterion for determinin...
International audienceChanges in samples of Li1–xCoO2 were measured by X-ray diffractometry (XRD) af...
In order to elucidate the origin of antiferromagnetic (AF) order below 30 K in LiCoO2, in which all ...
LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely t...
X-ray and electron diffraction experiments were performed to understand lithium and vacancy ordering...
HT-Lix0Co1-yMgyO2 (where x0 is the Li/(Co + Mg) ratio; x0 = 0.98, 1.0, 1.10; y = 0.0, 0.03, 0.06, an...
While LiCoO2: has been widely studied in the past 15 years as a promising positive electrode materia...
LiCoO<sub>2</sub>, one of the major positive electrode materials for Li-ion batteries, can be synthe...
Stoichiometric high temperature LiCoO2 obtained by long annealing in oxygen was characterized by ele...
extensively used as a positive electrode material for Li-ion batteries over past decades [1]. The co...
XPS analyses (core peaks and valence spectra), under highly controlled conditions, have been carried...
Deterioration mechanisms of LiCoO<sub>2</sub> electrode materials for lithium ion batteries remain u...
High temp. Lix0Co1-yNiyO2 (x0=1.0, 1.10; yr=0.0, 0.03, 0.06, and 0.10) phases were synthesized by so...
Lix0(Co,M)O2 (M = Ni, Mg ; x0 ≥ 1.0) materials used as positive electrode for Li-ion batteries have ...
LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely t...
The 7Li NMR T1 spin-lattice relaxation time is shown to be a very stringent criterion for determinin...
International audienceChanges in samples of Li1–xCoO2 were measured by X-ray diffractometry (XRD) af...
In order to elucidate the origin of antiferromagnetic (AF) order below 30 K in LiCoO2, in which all ...
LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely t...
X-ray and electron diffraction experiments were performed to understand lithium and vacancy ordering...
HT-Lix0Co1-yMgyO2 (where x0 is the Li/(Co + Mg) ratio; x0 = 0.98, 1.0, 1.10; y = 0.0, 0.03, 0.06, an...
While LiCoO2: has been widely studied in the past 15 years as a promising positive electrode materia...
LiCoO<sub>2</sub>, one of the major positive electrode materials for Li-ion batteries, can be synthe...