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The development of atomically dispersed iron‐nitrogen‐carbon (Fe─N─C) catalysts as an alternative to precious platinum holds great potential for the substantial progress of a variety of oxygen reduction reaction (ORR)‐associated energy conversion technologies. Nevertheless, the precise synthesis of Fe─N─C single atomic catalysts (SACs) with a high density of accessible active sites and pronounced...
The design of economical, efficient, and robust bifunctional oxygen electrocatalysts is greatly imperative for the large‐scale commercialization of rechargeable Zn‐air battery (ZAB) technology. Herein, the neoteric design of an advanced bifunctional electrocatalyst composed of CoN/Co3O4 heterojunction hollow nanoparticles in situ encapsulated in porous N‐doped carbon nanowires (denoted as CoN/Co3O...
The rational design of ingenious strategies to boost the intrinsic activity and stability of ruthenium (Ru) is of great importance for the substantial progression of water electrolysis technology. Based on Mott–Schottky effect, electronic regulation within a metal/semiconductor hybrid electrocatalyst represents a versatile strategy to boost the electrochemical performance. Herein, a typical Mott–Schottky...
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