Ultranarrow Graphene Nanoribbons toward Oxygen Reduction and Evolution Reactions

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Abstract

Identification of catalytic sites for oxygen reduction and evolution reactions (ORR/OER) is critical to rationally develop highly efficient bifunctional carbon-based metal-free electrocatalyst. Here, a unique defect-rich N-doped ultranarrow graphene nanoribbon with a high aspect ratio that exhibits excellent ORR/OER bifunctional activities and impressive long-term cycling stability in Zn–air batteries is successfully fabricated. Density functional theory calculations indicates that the topological defects (e.g., pentagons and heptagons) cooperated with pyridinic-N dopants on the edges are more favorable to electrocatalytic activity toward ORR and OER. This work provides a new design principle for carbon-based electrocatalytic nanomaterials.

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Zhang, J., Sun, Y., Zhu, J., Gao, Z., Li, S., Mu, S., & Huang, Y. (2018). Ultranarrow Graphene Nanoribbons toward Oxygen Reduction and Evolution Reactions. Advanced Science, 5(12). https://doi.org/10.1002/advs.201801375

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