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4. A practical perspective on the potential of rechargeable Mg batteries

5. A practical perspective on the potential of rechargeable Mg batteries

6. A practical perspective on the potential of rechargeable Mg batteries

7. Radiolysis on electrolytes of batteries: an efficient and quick screening for a fast selection of electrolytes

10. Cover Feature: AZ31 Magnesium Alloy Foils as Thin Anodes for Rechargeable Magnesium Batteries (ChemSusChem 21/2021)

11. AZ31 Magnesium Alloy Foils as Thin Anodes for Rechargeable Magnesium Batteries

13. 9. Les céramiques pour l’électronique et l’électrotechnique

15. Artificial Solid Electrolyte Interphase Formation on Si Nanoparticles through Radiolysis: Importance of the Presence of an Additive

16. Formation of artificial solid electrolyte interphase by radiolysis

18. Ex situ solid electrolyte interphase synthesis via radiolysis of Li-ion battery anode–electrolyte system for improved coulombic efficiency

20. Effects of Biphenyl Polymerization on Lithium Deposition in Commercial Graphite/NMC Lithium-Ion Pouch-Cells during Calendar Aging at High Temperature

22. Inside Back Cover: Electrolytes Ageing in Lithium-ion Batteries: A Mechanistic Study from Picosecond to Long Timescales (ChemSusChem 21/2015)

23. Corrigendum: Electrolytes Ageing in Lithium-ion Batteries: A Mechanistic Study from Picosecond to Long Timescales

24. Electrolytes Ageing in Lithium-ion Batteries: A Mechanistic Study from Picosecond to Long Timescales

42. Air Exposure Effect on LiFePO[sub 4]

43. Relationship between surface chemistry and electrochemical behavior of LiNi1/2Mn1/2O2 positive electrode in a lithium-ion battery

44. More on the reactivity of olivine LiFePO4 nano-particles with atmosphere at moderate temperature

45. Aging of the LiFePO4 positive electrode interface in electrolyte

46. Moisture driven aging mechanism of LiFePO4 subjected to air exposure

47. Aging of the LiNi[sub1/2]Mn[sub1/2]O[sub2] Positive Electrode Interface in Electrolyte.

48. Characterization of interphases appearing on LiNi0.5Mn0.5O2 using 7Li MAS NMR

49. Characterization of the surface of positive electrodes for Li-ion batteries using 7Li MAS NMR.

50. Aging of the LiNi1 ∕ 2Mn1 ∕ 2O2Positive Electrode Interface in Electrolyte

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