Christian Masquelier
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Deng Z, Mishra TP, Mahayoni E, et al. (2022) Fundamental investigations on the sodium-ion transport properties of mixed polyanion solid-state battery electrolytes. Nature Communications. 13: 4470 |
Boivin E, Chotard JN, Masquelier C, et al. (2021) Towards Reversible High-Voltage Multi-Electron Reactions in Alkali-Ion Batteries Using Vanadium Phosphate Positive Electrode Materials. Molecules (Basel, Switzerland). 26 |
Olchowka J, Nguyen LHB, Petit E, et al. (2020) Ionothermal Synthesis of Polyanionic Electrode Material NaV(PO)FO through a Topotactic Reaction. Inorganic Chemistry |
Bamine T, Boivin E, Masquelier C, et al. (2020) Local atomic and electronic structure in the LiVPO (F,O) tavorite-type materials from solid-state NMR combined with DFT calculations. Magnetic Resonance in Chemistry : Mrc. 58: 1109-1117 |
Nguyen L, Olchowka J, Belin S, et al. (2019) Monitoring the Crystal Structure and the Electrochemical Properties of Na3(VO)2(PO4)2F through Fe3+-Substitution. Acs Applied Materials & Interfaces |
Olchowka J, Nguyen LHB, Broux T, et al. (2019) Aluminum substitution for vanadium in the NaV(PO)F and NaV(PO)FO type materials. Chemical Communications (Cambridge, England) |
Famprikis T, Canepa P, Dawson JA, et al. (2019) Fundamentals of inorganic solid-state electrolytes for batteries. Nature Materials |
Kovrugin VM, David R, Chotard JN, et al. (2018) A High Voltage Cathode Material for Sodium Batteries: NaV(PO). Inorganic Chemistry |
Boivin E, Masquelier C, Croguennec L, et al. (2017) Crystal Structure and Lithium Diffusion Pathways of a Potential Positive Electrode Material for Lithium-Ion Batteries: LiV(HPO). Inorganic Chemistry. 56: 6776-6779 |
Deng Y, Eames C, Fleutot B, et al. (2017) Enhancing the Lithium ion conductivity in LISICON solid electrolytes through a mixed polyanion effect. Acs Applied Materials & Interfaces |