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3. Bulk and surface characterization of In$_2$O$_3$(001) single crystals

6. Structural Characterization of La0.6Sr0.4CoO3-δ Thin Films Grown on (100)-, (110)-, and (111)-Oriented La0.95Sr0.05Ga0.95Mg0.05O3-δ

9. Oxygen surface exchange kinetics of La1−xSrxCoO3–δ thin-films decorated with binary oxides: links between acidity, strontium doping, and reaction kinetics.

11. Structural Characterization of La 0.6 Sr 0.4 CoO 3− δ Thin Films Grown on (100)-, (110)-, and (111)-Oriented La 0.95 Sr 0.05 Ga 0.95 Mg 0.05 O 3− δ.

18. A Guideline to Mitigate Interfacial Degradation Processes in Solid‐State Batteries Caused by Cross Diffusion

21. A guideline to mitigate interfacial degradation processes in solid-state batteries caused by cross diffusion

32. Improving and degrading the oxygen exchange kinetics of La0.6Sr0.4CoO3−δ by Sr decoration.

34. Electron beam-induced brownmillerite–perovskite phase transition in La0.6Sr0.4CoO3−δ.

36. Unravelling the Origin of Ultra‐Low Conductivity in SrTiO 3 Thin Films: Sr Vacancies and Ti on A‐Sites Cause Fermi Level Pinning

39. Unravelling the Origin of Ultra-Low Conductivity in SrTiO3 Thin Films: Sr Vacancies and Ti on A-Sites Cause Fermi Level Pinning

40. Defect Chemistry of Spinel Cathode Materials─A Case Study of Epitaxial LiMn2O4Thin Films

43. Performance modulation through selective, homogenous surface doping of lanthanum strontium ferrite electrodes revealed by in situ PLD impedance measurements

44. In situ techniques reveal the true capabilities of SOFC cathode materials and their sudden degradation due to omnipresent sulfur trace impurities

45. In situ electrochemical observation of anisotropic lattice contraction of La0.6Sr0.4FeO3−δ electrodes during pulsed laser deposition.

46. Surface Chemistry and Degradation Processes of Dense La0.6Sr0.4CoO3-δ Thin Film Electrodes.

47. Unravelling the Origin of Ultra‐Low Conductivity in SrTiO3 Thin Films: Sr Vacancies and Ti on A‐Sites Cause Fermi Level Pinning.

49. Co3+/La3+ Cross-Diffusion at the Li7La3Zr2O12 | LiCoO2 Interface

50. Investigating the electrochemical stability of Li7La3Zr2O12 solid electrolytes using field stress experiments

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