Recherche
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Spinel materials for Li-ion batteries: new insights obtained by operando neutron and synchrotron X-ray diffraction
(Materials Science and Engineering: B. vol. 71, n° 6, pp. 14, 2015)Article de revue -
A new null matrix electrochemical cell for Rietveld refinements of in-situ or operando neutron powder diffraction data
(Journal of The Electrochemical Society. vol. 160, n° 11, pp. A2176-A2183, 2013)Article de revue -
One-step precipitation of nanometric LiMO<sub>2</sub> powders (M = Co, Fe) in alcoholic media
(Solid State Ionics. vol. 181, n° 13-14, pp. 623-630, 2010)Article de revue -
Unravelling the morphological dependency of the LiNi0.6Mn0.2Co0.2O2 layered oxide reactivity in Li-ion batteries
(ACS Applied Energy Materials. vol. 5, n° 7, pp. 8669–8685, 2022)Article de revue -
Morphology and surface reactivity relationship in the Li1+xMn2–xO4 spinel with x = 0.05 and 0.10: a combined first-principle and experimental study
(ACS Applied Materials & Interfaces. vol. 9, n° 51, pp. 44922-44930, 2017-12-13)Article de revue -
Surface reactivity of Li2MnO3: Structural and morphological impact
(Applied Surface Science. vol. 542, pp. 148514, 2021)Article de revue -
Effect of particle size on LiNi0.6Mn0.2Co0.2O2 layered oxide performance in Li-Ion batteries
(ACS Applied Energy Materials. vol. 5, n° 5, pp. 5617–5632, 2022)Article de revue -
Surface reactivity of Li2MnO3: first-principles and experimental study
(ACS Applied Materials & Interfaces. vol. 9, n° 50, pp. 44222-44230, 2017)Article de revue -
Reactivity at the electrode-electrolyte interfaces in Li-ion and gel electrolyte lithium batteries for LiNi0.6Mn0.2Co0.2O2 with different particle sizes
(ACS Applied Materials & Interfaces. vol. 5, n° 5, pp. 5617–5632., 2022)Article de revue