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Conductive bimetal organic framework nanorods decorated with highly dispersed CoOnanoparticles as bi-functional electrocatalyst. | LitMetric

Conductive bimetal organic framework nanorods decorated with highly dispersed CoOnanoparticles as bi-functional electrocatalyst.

Nanotechnology

State Key Laboratory of Chemical Resource Engineering, Laboratory of Electrochemical Process and Technology for materials, Beijing University of Chemical Technology, Beijing 100029, People's Republic of China.

Published: January 2022

The poor electronic conductivity and low intrinsic electrocatalytic activity of metal organic frameworks (MOFs) greatly limit their direct application in electrocatalytic reactions. Herein, we report a conductive two-dimensional-conjugated Ni and Co bimetal organic framework (MOF)-NiCo-(2,3,6,7,10,11-hexaiminotriphenylene) (NiCo-HITP) nanorods decorated with highly dispersed CoOnanoparticles (NPs) as a promising bi-functional electrocatalyst towards oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) through an effective and facile strategy by modifying the rod-shaped -NiHITPcrystals using cobalt ions. The triggered electrocatalytic activity of the resulting MOF-based materials was achieved by increasing the electrical conductivity (7.23 S cm) originated from NiHITPsubstrate and also by creating the cooperative catalysis sites of Co-Nand CoONPs. Optimized syntheses show a promising ORR activity with a high half-wave potential (0.77 V) and also a significantly improved OER activity compared with pure NiHITPin alkaline electrolyte. Furthermore, a rechargeable Zn-air battery using the as-prepared material as air-cathode also shows a high power density (143.1 mW cm)-even comparable to a commercial Pt/C-RuO-based battery. This methodology offers a new prospect in the design and synthesis of non-carbonized MOF bi-functional electrocatalysts for efficient catalysis towards ORR and OER.

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Source
http://dx.doi.org/10.1088/1361-6528/ac3d66DOI Listing

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