Controlling the Synthesis Protocols of Palladium‐Based Nanostructures for Enhanced Electrocatalytic Oxidation of Carbon Monoxide: A Mini‐Review

<p dir="ltr">Pd‐based nanostructures are endowed with impressive catalytic features for alcohol‐based fuel cells, however, their poisoning by carbon monoxide (CO) is a great barrier to large‐scale utilization of such fuel cells as alternative power sources. The need to optimize the e...

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Main Author: Adewale K. Ipadeola (12699590) (author)
Other Authors: Kamel Eid (1542562) (author), Aderemi B. Haruna (12699596) (author), Aboubakr M. Abdullah (1505017) (author), Kenneth I. Ozoemena (1924591) (author)
Published: 2023
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Summary:<p dir="ltr">Pd‐based nanostructures are endowed with impressive catalytic features for alcohol‐based fuel cells, however, their poisoning by carbon monoxide (CO) is a great barrier to large‐scale utilization of such fuel cells as alternative power sources. The need to optimize the electrochemical CO oxidation (CO<sub>Oxid</sub>) of Pd‐based nanostructures in various electrolytes has attracted much attention in the last decade, so it is important to provide a timely update on this area of research. This mini‐review highlights the most recent advances in controlling some synthesis methods of Pd‐based nanostructures and their morphologies for enhanced electrocatalytic CO<sub>Oxid</sub> in different electrolyte conditions in the last three years. Finally, the main challenges for commercially viable Pd‐based nanostructures for electrochemical CO<sub>Oxid</sub> are discussed, highlighting the future perspectives and providing promising solutions for practical CO<sub>Oxid</sub> application.</p><h2>Other Information</h2><p dir="ltr">Published in: ChemElectroChem<br>License: <a href="http://creativecommons.org/licenses/by/4.0/" target="_blank">http://creativecommons.org/licenses/by/4.0/</a><br>See article on publisher's website: <a href="https://dx.doi.org/10.1002/celc.202300363" target="_blank">https://dx.doi.org/10.1002/celc.202300363</a></p>