Ni Surface & Polyacryloyl Hydrazide Mediated Growth of Co3O4@NiCu Alloy Nanocuboids for Effective Methanol Oxidation and Oxygen Evolution Reactions

Author:

Semwal Santosh1,Samal Aiswarya2,Nayak Saroj Kumar2,Urkude Rajashri R.3,Sinha Akhoury Sudhir Kumar4,Ojha Umaprasana12ORCID

Affiliation:

1. Department of Sciences & Humanities Rajiv Gandhi Institute of Petroleum Technology Jais Uttar Pradesh 229304 India

2. School of Basic Sciences Indian Institute of Technology Jatni Bhubaneswar Odisha 752050 India

3. Beamline Development and Application Section Bhabha Atomic Research Center Trombay Mumbai 400085 India

4. Department of Chemical Engineering Rajiv Gandhi Institute of Petroleum Technology Jais Uttar Pradesh 229304 India

Abstract

AbstractStrategies to control the size, shape, and lattice arrangement, introduce doping agents, and induce heterostructuring in electrocatalysts are strongly desirable to tailor their activities. Herewith, a one‐pot strategy utilizing polyacryloyl hydrazide (PAHz) as the composition directing agent and metallic Ni surface as the shape directing agent is employed to grow Co3O4 doped NiCu alloy nanocuboids on Ni foam (NF) under hydrothermal conditions for electrocatalytic H2 production. The resulting bi‐functional electrodes are suitable for methanol oxidation reaction (MOR) coupled green H2 production with effective energy efficiency. The low overall potential (MOR+HER) of 1.78 V to realize the current density (j) value of 100 mA cm−2 and extended durability (100 h@10 mA cm−2) along with the selective conversion of methanol to formate support the viability of the NF‐PAHz‐Co3O4@NiCu for the said operation. The electrode also displays efficacy toward oxygen evolution reaction (OER) activity and jOER value of 100 mA cm−2 is realized at a potential value of 1.65 VRHE with adequate durability. Overall, the synthetic strategy is general, scalable and may be extended to grow other metal oxide doped alloy nanostructures in the future.

Publisher

Wiley

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