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electrochemical synthesis of Pd aerogels as highly efficient anodic electrocatalysts for alkaline fuel cells
Improving the utilization of noble metals is extremely urgent for fuel cell electrocatalysis, while three-dimensional hierarchical noble metal aerogels with abundant sites and channels are proposed to reinforce their electrocatalytic performances and decrease their amounts. Herein, novel Pd aerogels...
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Published in: | Chemical science (Cambridge) 2022-11, Vol.13 (46), p.13956-13965 |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | |
Online Access: | Get full text |
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Summary: | Improving the utilization of noble metals is extremely urgent for fuel cell electrocatalysis, while three-dimensional hierarchical noble metal aerogels with abundant sites and channels are proposed to reinforce their electrocatalytic performances and decrease their amounts. Herein, novel Pd aerogels with tunable surface chemical states were prepared through a facile
in situ
electrochemical activation, starting with PdO
x
aerogels by the hydrolysis method. The hierarchical porous Pd aerogels showed unprecedented high activity towards the electrocatalytic oxidation of fuels including methanol (2.99 A mg
Pd
−1
), ethanol (8.81 A mg
Pd
−1
), and others in alkali, outperforming commercial catalysts (7.12- and 13.66-fold, corresponding to methanol and ethanol). Theoretical investigation unveiled the hybrid surface states with metallic and oxidized Pd species in Pd aerogels to regulate the adsorption of intermediates and facilitate the synergistic oxidation of adsorbed *CO, resulting in enhanced activity with the MOR as the model. Therefore, efficient Pd aerogels through the
in situ
electrochemical activation of PdO
x
aerogels were proposed and showed great potential for fuel cell anodic electrocatalysis.
Pd aerogels were obtained by the
in situ
electrochemical activation of PdO
x
aerogels and functioned as highly efficient anodic electrocatalysts towards the oxidation of various fuels in alkaline solution for potential fuel cell applications. |
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ISSN: | 2041-6520 2041-6539 |
DOI: | 10.1039/d2sc05425f |