Abstract Engineering the crystal structure of Pt–M (M = transition metal) nanoalloys to chemically ordered ones has drawn increasing attention in oxygen reduction reaction (ORR) electrocatalysis due to their high resistance against M etching in acid. Although Pt–Ni alloy nanoparticles (NPs) have demonstrated respectable initial ORR activity in acid, their stability remains a big challenge due to the fast etching of Ni. In this work, sub‐6 nm monodisperse chemically orderedL10‐Pt–Ni–Co NPs are synthesized for the first time by employing a bifunctional core/shell Pt/NiCoOxprecursor, which could provide abundant O‐vacancies for facilitated Pt/Ni/Co atom diffusion and prevent NP sintering during thermal annealing. Further, Co doping is found to remarkably enhance the ferromagnetism (room temperature coercivity reaching 2.1 kOe) and the consequent chemical ordering ofL10‐Pt–Ni NPs. As a result, the best‐performing carbon supportedL10‐PtNi0.8Co0.2catalyst reveals a half‐wave potential (E1/2) of 0.951 V versus reversible hydrogen electrode in 0.1mHClO4with 23‐times enhancement in mass activity over the commercial Pt/C catalyst along with much improved stability. Density functional theory (DFT) calculations suggest that theL10‐PtNi0.8Co0.2core could tune the surface strain of the Pt shell toward optimized Pt–O binding energy and facilitated reaction rate, thereby improving the ORR electrocatalysis.
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This content will become publicly available on December 18, 2025
Pronounced electronic modulation of geometrically-regulated metalloenediyne cyclization
Using a diverse array of thermally robust phosphine enediynes, a novel suite of cisplatin-like Pt(ii) metalloenediynes (3, Pt(dxpeb)Cl2) has been synthesized representing unique electronic perturbations on thermal Bergman cyclization kinetics.
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- Award ID(s):
- 2247314
- PAR ID:
- 10594853
- Publisher / Repository:
- Royal Society
- Date Published:
- Journal Name:
- Chemical Science
- Volume:
- 16
- Issue:
- 1
- ISSN:
- 2041-6520
- Page Range / eLocation ID:
- 255 to 279
- Format(s):
- Medium: X
- Sponsoring Org:
- National Science Foundation
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