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具有特定元素的各向异性生长的成型铂合金纳米晶体。

Element-specific anisotropic growth of shaped platinum alloy nanocrystals.

机构信息

Electrochemical Energy, Catalysis and Materials Science Laboratory, Department of Chemistry, Chemical Engineering Division, Technical University Berlin, 10623 Berlin, Germany. Division of Energy and Environment, Graduate School at Shenzhen, Tsinghua University, 518055 Shenzhen, PR China.

Electrochemical Energy, Catalysis and Materials Science Laboratory, Department of Chemistry, Chemical Engineering Division, Technical University Berlin, 10623 Berlin, Germany.

出版信息

Science. 2014 Dec 19;346(6216):1502-6. doi: 10.1126/science.1261212.

Abstract

Morphological shape in chemistry and biology owes its existence to anisotropic growth and is closely coupled to distinct functionality. Although much is known about the principal growth mechanisms of monometallic shaped nanocrystals, the anisotropic growth of shaped alloy nanocrystals is still poorly understood. Using aberration-corrected scanning transmission electron microscopy, we reveal an element-specific anisotropic growth mechanism of platinum (Pt) bimetallic nano-octahedra where compositional anisotropy couples to geometric anisotropy. A Pt-rich phase evolves into precursor nanohexapods, followed by a slower step-induced deposition of an M-rich (M = Ni, Co, etc.) phase at the concave hexapod surface forming the octahedral facets. Our finding explains earlier reports on unusual compositional segregations and chemical degradation pathways of bimetallic polyhedral catalysts and may aid rational synthesis of shaped alloy catalysts with desired compositional patterns and properties.

摘要

化学和生物学中的形态形状归因于各向异性生长,并且与独特的功能密切相关。尽管人们已经了解了单金属形状纳米晶体的主要生长机制,但对形状合金纳米晶体的各向异性生长仍知之甚少。我们使用像差校正扫描透射电子显微镜揭示了铂(Pt)双金属纳米八面体的各向异性生长机制,其中组成各向异性与几何各向异性耦合。富 Pt 相演变成前驱体纳米六足体,然后在凹六足体表面以较慢的阶跃诱导沉积富 M(M = Ni、Co 等)相,形成八面体面。我们的发现解释了之前关于双金属多面体催化剂中不寻常的组成分凝和化学降解途径的报告,并且可能有助于具有所需组成模式和性能的形状合金催化剂的合理合成。

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