Surface‐Confined Ultra‐Low Scale Pd Engineered Layered Co(OH)2 toward High‐Performance Hydrazine Electrooxidation in Alkaline Saline Water (Adv. Sci. 21/2023)
Hydrazine Electrooxidation In article number 2300639, Swagotom Sarker, Ji Hoon Choi, Hyung Koun Cho, and co‐workers reveal the hydrazine and Pd‐dependent morphological evolution of Co(OH)2 and its Pd hybrids into nanoparticulate form. They uncover that the ultra‐low scale Pd confined on the Co(OH)2...
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Published in | Advanced science Vol. 10; no. 21 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Weinheim
John Wiley & Sons, Inc
27.07.2023
John Wiley and Sons Inc |
Subjects | |
Online Access | Get full text |
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Summary: | Hydrazine Electrooxidation
In article number 2300639, Swagotom Sarker, Ji Hoon Choi, Hyung Koun Cho, and co‐workers reveal the hydrazine and Pd‐dependent morphological evolution of Co(OH)2 and its Pd hybrids into nanoparticulate form. They uncover that the ultra‐low scale Pd confined on the Co(OH)2 surface is a competent catalyst to synergistically enhance hydrazine oxidation reaction (HzOR) in both alkaline and alkaline saline electrolytes as an alternative to the conventional oxygen evolution reaction (OER) and the corrosive chlorine oxidation reaction (ClOR). |
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ISSN: | 2198-3844 2198-3844 |
DOI: | 10.1002/advs.202370139 |