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Y.J. Li, L.S. Wu, Y.J. Ding, Z.-S. Wu*

STAR Protocols, 2023, 4.

DOI: 10.1016/j.xpro.2023.102746 [PDF]

发布时间:2023-11-15    栏目名称:2023

Y.J. Li, L.S. Wu, Y.J. Ding, Z.-S. Wu*

STAR Protocols, 2023, 4.

DOI: 10.1016/j.xpro.2023.102746 [PDF]

The commercial mass production of bifunctional oxygen catalysts with high activity and stability is critical for constructing high-performance Li-O2 batteries, but remains challenging. Herein, we describe a protocol for the scalable fabrication of a 2D porous bifunctional electrocatalyst of Pt/RuO2/graphene by spatial confinement strategy, and elaborately evaluate its oxygen reduction reaction & oxygen evolution reaction for advanced Li-O2 batteries. We then detail the synthesis steps for preparing electrocatalyst materials followed by assembly and evaluation of the three-electrode systems and coin-type Li-O2 batteries.

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