3D Rosa centifolia-like CeO encapsulated with N-doped carbon as an enhanced electrocatalyst for Zn-air batteries.

J Colloid Interface Sci

Key Laboratory of Eco-Environment-Related Polymer Materials, Ministry of Education of China, Key Laboratory of Gansu Polymer Materials, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, China. Electronic address:

Published: October 2020

Reasonable design and synthesis of high-efficiency rare earth oxides-based materials as alternatives to noble-metal catalysts are of great significance for oxygen electrocatalysis. Herein, we report three-dimension (3D) Rosa centifolia-like CeO encapsulated with N-doped carbon (NC) composites (CeO@NC) for enhancing oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) activities. This synthetic method allows CeO to tune the oxygen vacancy concentration and electronic structure of a series of CeO@NC catalysts due to its large oxygen-storage-capacity (OSC) property. Moreover, benefiting from the exposed active sites in NC as well as the synergy between CeO and NC, among as-prepared samples, the resultant CeO@NC-900 delivers a half-wave potential (E) of 0.854 V, which is more positive compared with counterpart of NC-900 (0.806 V) and even comparable to that of commercial Pt/C catalyst (0.855 V). This indicates that the ORR electrocatalytic activity of CeO@NC-900 is significantly improved. Meanwhile, CeO@NC-900 exhibits satisfactory performance toward OER. For practical application, the CeO@NC-900 involved rechargeable Zn-air battery possesses excellent energy efficiency, superior stability, and large energy density (666.1 Wh kg at 5 mA cm). This approach provides a valid way to develop advanced rare earth oxides-based materials for energy applications.

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http://dx.doi.org/10.1016/j.jcis.2020.06.040DOI Listing

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3D Rosa centifolia-like CeO encapsulated with N-doped carbon as an enhanced electrocatalyst for Zn-air batteries.

J Colloid Interface Sci

October 2020

Key Laboratory of Eco-Environment-Related Polymer Materials, Ministry of Education of China, Key Laboratory of Gansu Polymer Materials, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, China. Electronic address:

Reasonable design and synthesis of high-efficiency rare earth oxides-based materials as alternatives to noble-metal catalysts are of great significance for oxygen electrocatalysis. Herein, we report three-dimension (3D) Rosa centifolia-like CeO encapsulated with N-doped carbon (NC) composites (CeO@NC) for enhancing oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) activities. This synthetic method allows CeO to tune the oxygen vacancy concentration and electronic structure of a series of CeO@NC catalysts due to its large oxygen-storage-capacity (OSC) property.

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