Cyanogel auto-reduction induced synthesis of PdCo nanocubes on carbon nanobowls: a highly active electrocatalyst for ethanol electrooxidation
Direct ethanol fuel cells (DEFCs) with a high conversion efficiency are quite promising candidates for energy conversion devices. Herein, we have successfully synthesized PdCo alloy nanocubes supported on carbon nanobowl (denoted as Pd 2 Co 1 /CNB) nanohybrids by using the cyanogel auto-reduction me...
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Veröffentlicht in: | Nanoscale 2019-07, Vol.11 (28), p.13477-13483 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Direct ethanol fuel cells (DEFCs) with a high conversion efficiency are quite promising candidates for energy conversion devices. Herein, we have successfully synthesized PdCo alloy nanocubes supported on carbon nanobowl (denoted as Pd
2
Co
1
/CNB) nanohybrids by using the cyanogel auto-reduction method at high temperature. The morphology, composition and structure of Pd
2
Co
1
/CNB nanohybrids are characterized in detail, revealing that PdCo nanocubes have a high alloying degree and special {110} facets. In cyclic voltammetry measurements, Pd
2
Co
1
/CNB nanohybrids show a mass activity of 1089.0 A g
Pd
−1
and a specific activity of 40.03 mA cm
−2
for ethanol electrooxidation at peak potential, which are much higher than that of the commercial Pd/C electrocatalyst (278.2 A g
Pd
−1
and 8.22 mA cm
−2
). Additionally, chronoamperometry measurements show that Pd
2
Co
1
/CNB nanohybrids have excellent durability for ethanol electrooxidation. A high alloying degree, special {110} facets and the CNB supporting material contribute to the high activity and durability of Pd
2
Co
1
/CNB nanohybrids, making them a highly promising Pt-alternative electrocatalyst for ethanol electrooxidation in DEFCs.
Direct ethanol fuel cells (DEFCs) with a high conversion efficiency are quite promising candidates for energy conversion devices. |
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ISSN: | 2040-3364 2040-3372 |
DOI: | 10.1039/c9nr04767k |