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首页> 外文期刊>Nano letters >Epitaxial Growth of Multimetallic Pd@PtM (M = Ni, Rh, Ru) Core-Shell Nanoplates Realized by in Situ-Produced CO from Interfacial Catalytic Reactions
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Epitaxial Growth of Multimetallic Pd@PtM (M = Ni, Rh, Ru) Core-Shell Nanoplates Realized by in Situ-Produced CO from Interfacial Catalytic Reactions

机译:多金属Pd @ PtM(M = Ni,Rh,Ru)核壳纳米板的外延生长,通过界面催化反应原位生成的CO实现

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摘要

Pt-based multimetallic core shell nanoplates have received great attention as advanced catalysts, but the synthesis is still challenging. Here we report the synthesis of multimetallic Pd@PtM (M = Ni, Rh, Ru) nanoplates including Pd@Pt nanoplates, in which Pt or Pt alloy shells with controlled thickness epitaxially grow on plate-like Pd seeds. The key to achieve high-quality Pt-based multimetallic nanoplates is in situ generation of CO through interfacial catalytic reactions associated with Pd nanoplates and benzyl alcohol. In addition, the accurate control in a trace amount of CO is also of great importance for conformal growth of multimetallic core shell nanoplates. The Pd@PtNi nanoplates exhibit substantially improved activity and stability for methanol oxidation reaction (MOR) compared to the Pd@Pt nanoplates and commercial Pt catalysts due to the advantages arising from plate-like, core shell, and alloy structures.
机译:铂基多金属核壳纳米板作为先进的催化剂受到了广泛的关注,但合成仍具有挑战性。在这里,我们报告了包括Pd @ Pt纳米板在内的多金属Pd @ PtM(M = Ni,Rh,Ru)纳米板的合成,其中厚度可控的Pt或Pt合金壳在板状Pd种子上外延生长。实现高质量基于Pt的多金属纳米板的关键是通过与Pd纳米板和苯甲醇相关的界面催化反应原位生成CO。此外,对多金属核壳纳米板的保形生长来说,精确控制痕量的CO也是非常重要的。与Pd @ Pt纳米板和市售Pt催化剂相比,Pd @ PtNi纳米板的甲醇氧化反应(MOR)活性和稳定性大大提高,这归因于板状,核壳和合金结构的优势。

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