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1. Integration of Multijunction Absorbers and Catalysts for Efficient Solar‐Driven Artificial Leaf Structures: A Physical and Materials Science Perspective

2. Water electrolysis: from textbook knowledge to the latest scientific strategies and industrial developments

4. Integration of multi‐junction absorbers and catalysts for efficient solar‐driven artificial leaf structures: a physical and materials science perspective

9. Enhancing the Performance of Shape-Controlled Octahedral Rhodium-Doped PtNi Nanoalloys inside Hydrogen–Air Fuel Cell Cathodes Using a Rational Design of Catalysts, Supports, and Layering

10. Assessing Utilization Boundaries for Pt-Based Catalysts in an Operating Proton-Exchange Membrane Fuel Cell

11. A Life-Cycle of Ni in Proton Exchange Membrane Fuel Cells

15. In-situ structure and catalytic mechanism of NiFe and CoFe layered double hydroxides during oxygen evolution

16. Assessing Utilization Boundaries for Pt-based Catalysts in an Operating PEMFC

18. Effect of Metal Layer Support Structures on the Catalytic Activity of NiFe(oxy)hydroxide (LDH) for the OER in Alkaline Media

19. Effect of Metal Layer Support Structures on the Catalytic Activity of NiFe(oxy)hydroxide (LDH) for the OER in Alkaline Media

21. High Power Density Automotive Membrane Electrode Assemblies

24. Electrochemical Hydrogen Evolution: Sabatier's Principle and the Volcano Plot

25. Author Correction: P-block single-metal-site tin/nitrogen-doped carbon fuel cell cathode catalyst for oxygen reduction reaction

28. Water electrolysis: from textbook knowledge to the latest scientific strategies and industrial developments

35. P-block single-metal-site tin/nitrogen-doped carbon fuel cell cathode catalyst for oxygen reduction reaction:[Inkl. Correction]

40. Anisotropy of Pt nanoparticles on carbon- and oxide-support and their structural response to electrochemical oxidation probed by in situ techniques

44. A comparison of rotating disc electrode, floating electrode technique and membrane electrode assembly measurements for catalyst testing

50. A comparison of rotating disc electrode, floating electrode technique and membrane electrode assembly measurements for catalyst testing

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