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3. Solid-State Synthesis of Na4Fe3(PO4)2P2O7/C by Ti-Doping with Promoted Structural Reversibility for Long-Cycling Sodium-Ion Batteries

4. NaGaPO4F – a KTiOPO4-structured solid sodium-ion conductor.

5. Lithium isotope tracing in silicon-based electrodes using solid-state MAS NMR: a powerful comprehensive tool for the characterization of lithium batteries.

6. NaGaPO4F – a KTiOPO4-structured solid sodium-ion conductor

8. (De)Lithiation and Strain Mechanism in Crystalline Ge Nanoparticles

12. Na9In(MoO4)6: synthesis, crystal structure, and Na+ ion diffusion.

13. Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na5Sc(MoO4)4 from NMR Experiment and Ab Initio Calculations

14. Coexistence of three types of sodium motion in double molybdate Na9Sc(MoO4)6: 23Na and 45Sc NMR data and ab initio calculations.

15. New Solid Electrolyte Na9Al(MoO4)6: Structure and Na+ Ion Conductivity

18. Li-Rich Mn/Ni Layered Oxide as Electrode Material for Lithium Batteries: A 7Li MAS NMR Study Revealing Segregation into (Nanoscale) Domains with Highly Different Electrochemical Behaviors

19. Mechanism of Sodium-Ion Diffusion in Alluaudite-Type Na5Sc(MoO4)4from NMR Experiment and Ab Initio Calculations

21. Application of Li NMR to characterize the evolution of intercalated and non-intercalated lithium in LiFePO-based materials for Li-ion batteries.

22. Solid-State Synthesis of Na 4 Fe 3 (PO 4 ) 2 P 2 O 7 /C by Ti-Doping with Promoted Structural Reversibility for Long-Cycling Sodium-Ion Batteries.

23. NaGaPO 4 F - a KTiOPO 4 -structured solid sodium-ion conductor.

24. Coexistence of three types of sodium motion in double molybdate Na 9 Sc(MoO 4 ) 6 : 23 Na and 45 Sc NMR data and ab initio calculations.

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