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1. Cation insertion to break the activity/stability relationship for highly active oxygen evolution reaction catalyst

2. First Example of Protonation of Ruddlesden–Popper Sr2IrO4: A Route to Enhanced Water Oxidation Catalysts

3. A Dissolution/Precipitation Equilibrium on the Surface of Iridium‐Based Perovskites Controls Their Activity as Oxygen Evolution Reaction Catalysts in Acidic Media

4. Making Advanced Electrogravimetry as an Affordable Analytical Tool for Battery Interface Characterization

5. Operando decoding of chemical and thermal events in commercial Na(Li)-ion cells via optical sensors

6. Revealing the Impact of Electrolyte Composition for Co-Based Water Oxidation Catalysts by the Study of Reaction Kinetics Parameters

7. Elucidating the Origin of the Electrochemical Capacity in a Proton-Based Battery H x IrO 4 via Advanced Electrogravimetry

8. Cation insertion to break the activity/stability relationship for highly active oxygen evolution reaction catalyst

9. Li-Rich Layered Sulfide as Cathode Active Materials in All-Solid-State Li–Metal Batteries

10. Elucidating the Origin of the Electrochemical Capacity in a Proton-Based Battery H

11. Impact of Structural Polymorphism on Ionic Conductivity in Lithium Copper Pyroborate Li6CuB4O10

12. Polymorphism in Li4Zn(PO4)2 and Stabilization of its Structural Disorder to Improve Ionic Conductivity

13. Low-cost high-efficiency system for solar-driven conversion of CO

14. Low-cost high-efficiency system for solar-driven conversion of CO 2 to hydrocarbons

15. Molecular grafting on silicon anodes: artificial Solid-Electrolyte Interphase and surface stabilization

16. Editors' Choice—Practical Assessment of Anionic Redox in Li-Rich Layered Oxide Cathodes: A Mixed Blessing for High Energy Li-Ion Batteries

17. Electrochemical activity and high ionic conductivity of lithium copper pyroborate Li6CuB4O10

18. Lithiation Mechanism of Methylated Amorphous Silicon Unveiled by Operando ATR-FTIR Spectroscopy

19. Competition between Metal Dissolution and Gas Release in Li-Rich Li 3 Ru y Ir 1– y O 4 Model Compounds Showing Anionic Redox

20. Assessment of the Electrochemical Stability of Carbonate-Based Electrolytes in Na-Ion Batteries

21. Synthesis, Structure, and Electrochemical Properties of K-Based Sulfates K

22. Synthesis, structure, and electrochemical properties of k-based sulfates <tex>K_{2}M_{2}(SO_{4})_{3}$</tex>) with M = Fe and Cu

23. Synthesis, Structure, and Electrochemical Properties of Na

24. Synthesis, Structure, and Electrochemical Properties of Na3MB5O10 (M = Fe, Co) Containing M2+in Tetrahedral Coordination

25. ChemInform Abstract: A2VO(SO4)2(A: Li, Na) as Electrodes for Li-Ion and Na-Ion Batteries

26. Methylated silicon: A longer cycle-life material for Li-ion batteries

27. A2VO(SO4)2 (A = Li, Na) as Electrodes for Li-Ion and Na-Ion Batteries

28. ChemInform Abstract: A Fully Ordered Triplite, LiCuSO4F

29. A Fully Ordered Triplite, LiCuSO 4 F

30. Microsized Sn as Advanced Anodes in Glyme-Based Electrolyte for Na-Ion Batteries

31. Area Effects on the Mott-Schottky Behavior of Anodic Films Formed on AISI 304 Stainless Steel

32. Spectroscopic Insight into Li-Ion Batteries during Operation: An Alternative Infrared Approach

33. Improved Electrochemical Performances of Methylated Amorphous Si Electrode Studied By Tof-SIMS

34. In Situ Infrared Studies at the Semiconductor/Electrolyte Interface and Application to Lithium-Ion Batteries

35. Selective Dissolution of Ni from Nitinol for Increasing the Biocompatibility

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