Core–shell-structured nanoporous PtCu with high Cu content and enhanced catalytic performance

A core-shell-structured bimetallic nanoporous PtCu catalyst with a high non-noble metal content (Cu: similar to 55 at%) and uniformly distributed ultrafine ligaments ( similar to 3 nm) is fabricated by one-step dealloying a well-designed Pt sub(4)Cu sub(21)Mn sub(7 5) single-phase ternary precursor...

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Veröffentlicht in:Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2015-01, Vol.3 (15), p.7939-7944
Hauptverfasser: Qiu, H-J, Xu, H T, Li, X, Wang, J Q, Wang, Y
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Sprache:eng
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Zusammenfassung:A core-shell-structured bimetallic nanoporous PtCu catalyst with a high non-noble metal content (Cu: similar to 55 at%) and uniformly distributed ultrafine ligaments ( similar to 3 nm) is fabricated by one-step dealloying a well-designed Pt sub(4)Cu sub(21)Mn sub(7 5) single-phase ternary precursor in 1 M (NH sub(4)) sub(2)SO sub(4) aqueous solution. The one-step dealloying involves a two-step corrosion process: one is fast dealloying the most active Mn from the ternary alloy to form nanoporous PtCu and the next step is a slow dealloying process which would slowly dissolve Cu from the PtCu alloy ligament surface forming a core-shell-structured nanoporous PtCu alloy with a Pt shell and a PtCu alloy core. Electrochemical measurements manifest that the core-shell-structured nanoporous PtCu exhibits greatly enhanced catalytic activity towards the electro-oxidation of methanol and formic acid compared with both nanoporous Pt and the state-of-the-art Pt/C catalyst. With evident advantages of facile preparation and enhanced catalytic performance, the nanoporous core-shell-structured PtCu catalyst is very promising as an anode catalyst in fuel cells. Moreover, this strategy (i.e., dealloying well-designed Mn-based ternary alloys) can also be used to fabricate other uniform nanoporous core-shell-structured alloys such as the nanoporous NiCu alloy.
ISSN:2050-7488
2050-7496
DOI:10.1039/c5ta00020c