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Strong demand for renewable energy resources and clean environments have inspired scientists and researchers across the globe to carry out research activities on energy provision, conversion, and storage devices. In this context, development of outperform, stable, and durable electrocatalysts has been identified as one of the major objectives for oxygen evolution reaction (OER). Herein, we offer facile approach for the deposition of few palladium oxide (PdO) nanoparticles on the cobalt–nickel bi-metallic sulphide (CoNi 2 S 4) microstructures represented as PdO@ CoNi 2 S 4 using ultraviolet light (UV) reduction method. The morphology, crystalline structure, and chemical composition of the as-prepared PdO@ CoNi 2 S 4 composite were probed through scanning electron microscopy, powder x-ray diffraction, high resolution transmission electron microscopy, energy dispersive spectroscopy and x-ray …
IOP Publishing
Publication date: 
20 Apr 2022

Aneela Tahira, Umair Aftab, Muhammad Yameen Solangi, Alessandro Gradone, Vittorio Morandi, Shymaa S Medany, Amal Kasry, Antonia Infantes-Molina, Ayman Nafady, Zafar Hussain Ibupoto

Biblio References: 
Volume: 33 Issue: 27 Pages: 275402