Bottom-Up Construction of Active Sites in a Cu-N<sub>4</sub>-C Catalyst for Highly Efficient Oxygen Reduction Reaction.

Li, Wei; Min, Chungang; Tan, Feng; Li, Zhanping; Zhang, Bingsen; Si, Rui; Xu, Mingli; Liu, Weiping et al. · ACS Nano · 2019

basic_science · Level V

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Abstract

Bottom-up construction of efficient active sites in transition metal-nitrogen-carbon (M-N-C) catalysts for oxygen reduction reaction (ORR) from single molecular building blocks remains one of the most difficult challenges. Herein, we report a bottom-up approach to produce a highly active Cu-N<sub>4</sub>-C catalyst with well-defined Cu-N<sub>4</sub> coordination sites derived from a small molecular copper complex containing Cu-N<sub>4</sub> moieties. The Cu-N<sub>4</sub> moieties were found to be covalently integrated into graphene sheets to create the Cu-N<sub>4</sub> active sites for ORR. Furthermore, the activity was boosted by tuning the structure of active sites. We find that the high ORR activity of the Cu-N<sub>4</sub>-C catalyst is related to the Cu-N<sub>4</sub> center linked to edges of the graphene sheets, where the electronic structure of the Cu center has the right symmetry for the degenerate π* orbital of the O<sub>2</sub> molecule. These findings point out the direction for the synthesis of the M-N-C catalysts at the molecular level.