Optimizing Electron Densities of Ni‐N‐C Complexes by Hybrid Coordination for Efficient Electrocatalytic CO<sub>2</sub> Reduction

Zhongli Wang, Jaecheol Choi, Mingquan Xu, Xianfeng Hao, Hao Zhang, Zheng Jiang, Ming J. Zuo, Jeonghun Kim, Wu Zhou, Xianguang Meng,

ChemSusChem · 2019 · 97 citations · 53 references

Abstract

Metal-N-C is a type of attractive electrocatalyst for efficient CO<sub>2</sub> reduction to CO. Because of the ambiguity in their atomic structures, the active sites and catalytic mechanisms of the catalysts have remained under debate. Here, the effects of N and C hybrid coordination on the activity of Ni-N-C catalysts were investigated, combining theoretical and experimental methods. The theoretical calculations revealed that N and C hybrid coordination greatly enhanced the capability of single-atom Ni active sites to provide electrons to reactant molecules and strengthens the bonding of Ni to N and C in the Ni-N-C complexes. During the reaction process, the C and N coordination synergistically optimized the reaction energies in the conversion of CO<sub>2</sub> to CO. A good agreement between theoretical calculations and electrochemical experiments was achieved based on the newly developed Ni-N-C electrocatalysts. The activity of hybrid-coordination NiN<sub>2</sub> C<sub>2</sub> was more than double that of single-coordination NiN<sub>4</sub> .

References

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