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2. Li4NiTeO6 as a positive electrode for Li-ion batteries

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3. Reversible anionic redox chemistry in high-capacity layered-oxide electrodes

4. High performance Li2Ru1-yMnyO3 (0.2 ≤ y ≤ 0.8) cathode materials for rechargeable lithium-ion batteries: Their understanding

5. Origin of the 3.6 v to 3.9 v voltage increase in the LiFeSO 4F cathodes for Li-ion batteries

6. Single-step synthesis of FeSO 4F 1-yOH y (0 ≤y ≤1) positive electrodes for li-based batteries

7. A 3.90 v iron-based fluorosulphate material for lithium-ion batteries crystallizing in the triplite structure

8. Towards the reactivity of MIL-53 or FeIII(OH)0.8F0.2[O2C-C6H4-CO2]versus lithium

9. Mixed-valence Li/Fe-based metal-organic frameworks with both reversible redox and sorption properties

10. FeP: Another attractive anode for the Li-ion battery enlisting a reversible two-step insertion/conversion process

11. Electrochemical reactivity and design of NiP2 negative electrodes for secondary Li-Ion batteries

12. On the reactivity of Li 8-yMn yP 4 toward lithium

16. Effect of the cooling rate on the transverse magnetoresistance of (TSeT)2Cl in its charge-density wave ground state

22. Why has 1T-TaTe"2 not yet been synthetized? A DFT contribution.

23. Quantitative on-site repulsion U for the Ni(dmit)"2 molecule: A DMRG study of the NR"4[Ni(dmit)"2]"2 salts

25. The LixMPn4 phases (M/Pn = Ti/P, V/As): new negative electrode materials for lithium ion rechargeable batteries