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Supplementary information files for "Nanoscale confinement‐induced atom‐milling Pd nano‐sheets into ultra‐fine Pd3Co Alloys"

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Figshare2025-04-08 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Supplementary_information_files_for_Nanoscale_confinement_induced_atom_milling_Pd_nano_sheets_into_ultra_fine_Pd_sub_3_sub_Co_Alloys_/28956008
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Atomic regulation of nanocatalysts is of both scientific and technological importance in efficient hydrogen energy conversion technology. Here a feasible nanoscale confinement‐induced atom‐milling (NCAM) method is reported to synthesize and atomically mesh 1 nm thick Pd metallic films into ultra‐fine Pd3Co nanoalloys. The nano‐sized inner space of layered crystalline provides a nano‐scaled limitation (1.3 nm) for atoms’ collision, which forces the assembly of hydrogen or Co atoms into a Pd lattice to expand or contract crystal as atom‐milling. The resulting ultra‐fine Pd3Co nanoalloys exhibit nearly three times higher activity than commercial Pt/C for oxygen reduction reaction, and 2.3 times higher activity than Pd/C for formic acid electrooxidation reaction, for fuel cells, and wider electrocatalysis applications.
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2025-04-08
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