Highly active, durable and pH-universal hybrid oxide nanocrystals for efficient oxygen evolution
Author | Ahmad, Yahia H. |
Author | Eid, Kamel A. |
Author | AlQaradawi, Siham Y. |
Author | Allam, Nageh K. |
Available date | 2023-01-08T08:27:18Z |
Publication Date | 2017 |
Publication Name | Sustainable Energy and Fuels |
Resource | Scopus |
Abstract | The development of an active, durable, and low-cost catalyst remains hitherto a grand challenge in energy conversion technologies. Herein, hybrid Ptx-NiMnO3 nanocrystals (NCs) (x = 0.1, 0.5, and 1.0 mM) were synthesized by a modified citrate-gel approach and utilized as efficient catalysts towards the oxygen evolution reaction (OER). The results showed that the size of Ptx-NiMnO3 NCs decreases with increasing the initial concentration of Pt. Meanwhile, the OER activity and durability of the as-synthesized Pt-NiMnO3 under different pH conditions are found to be Pt-content-dependent. Particularly, Pt1-NiMnO3 showed superior OER efficiency relative to its counterparts Pt0.5-NiMnO3, Pt0.1-NiMnO3, NiMnO3, and commercial Pt/C at different pH values, ascribed to the size, morphology, and composition effects as confirmed via XRD, XPS and electrochemical characterization. 2018 The Royal Society of Chemistry. |
Language | en |
Publisher | Royal Society of Chemistry |
Subject | Catalysts Composition effects Energy conversion Manganese compounds Nanocrystals Nickel compounds Oxygen pH Content dependent Efficient catalysts Electrochemical characterizations Energy conversion technologies Initial concentration Low cost catalysts Oxide nanocrystals Oxygen evolution reaction Platinum compounds catalyst concentration (composition) crystal structure durability nanoparticle oxygen pH |
Type | Article |
Pagination | 1123-1129 |
Issue Number | 5 |
Volume Number | 1 |
Files in this item
Files | Size | Format | View |
---|---|---|---|
There are no files associated with this item. |
This item appears in the following Collection(s)
-
Chemistry & Earth Sciences [586 items ]