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1. A correlated ferromagnetic polar metal by design

2. Emergent zero-field anomalous Hall effect in a reconstructedrutileantiferromagnetic metal

3. Manipulation of the Ferromagnetism in LaCoO3 Thin Films Through Cation‐Stoichiometric Engineering

5. Robust ferromagnetism in highly strained SrCoO3 thin films

7. Reversible manipulation of the magnetic state in SrRuO3 through electric-field controlled proton evolution.

8. Electric-field Control of Magnetism with Emergent Topological Hall Effect in SrRuO3 through Proton Evolution

9. Manipulate the Electronic and Magnetic States in NiCo2O4 Films through Electric‐Field‐Induced Protonation at Elevated Temperature

10. Manipulate the Electronic and Magnetic States in NiCo2 O4 Films through Electric-Field-Induced Protonation at Elevated Temperature.

11. Enhanced Magnetization in CoFe 2 O 4 Through Hydrogen Doping

14. Manipulation of the Ferromagnetism in LaCoO3 Thin Films Through Cation‐Stoichiometric Engineering.

15. Enhanced Magnetization in CoFe2O4 Through Hydrogen Doping.

16. A Generic Sacrificial Layer for Wide‐Range Freestanding Oxides with Modulated Magnetic Anisotropy

17. Facile Pathways to Synthesize Perovskite Strontium Cobalt Oxides.

18. Analog memristive synapse based on topotactic phase transition for high-performance neuromorphic computing and neural network pruning

19. Robust Ferromagnetism in Highly Strained SrCoO3 Thin Films

20. Electric Field–Controlled Multistep Proton Evolution in HxSrCoO 2.5 with Formation of H–H Dimer

22. Manipulate the Electronic and Magnetic States in NiCo 2 O 4 Films through Electric‐Field‐Induced Protonation at Elevated Temperature

23. Tuning the electronic properties of epitaxial strained CaFeO3−δ thin films.

24. Oxygen Ion Pumping across Atomically Designed Oxide Heterointerfaces.

25. Electric Field–Controlled Multistep Proton Evolution in HxSrCoO2.5 with Formation of H–H Dimer.

27. Coexistence of Both Localized Electronic States and Electron Gas at Rutile TiO 2 Surfaces.

28. Reversible manipulation of the magnetic state in SrRuO 3 through electric-field controlled proton evolution.

29. Electric Field-Controlled Multistep Proton Evolution in H x SrCoO 2.5 with Formation of H-H Dimer.

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