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Imaging Three-Dimensional Elemental Inhomogeneityin Pt–Ni Nanoparticles Using Spectroscopic Single ParticleReconstruction

机译:成像三维元素不均匀光谱单粒子分析Pt-Ni纳米粒子重建

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摘要

The properties of nanoparticles are known to critically depend on their local chemistry but characterizing three-dimensional (3D) elemental segregation at the nanometer scale is highly challenging. Scanning transmission electron microscope (STEM) tomographic imaging is one of the few techniques able to measure local chemistry for inorganic nanoparticles but conventional methodologies often fail due to the high electron dose imparted. Here, we demonstrate realization of a new spectroscopic single particle reconstruction approach built on a method developed by structural biologists. We apply this technique to the imaging of PtNi nanocatalysts and find new evidence of a complex inhomogeneous alloying with a Pt-rich core, a Ni-rich hollow octahedral intermediate shell and a Pt-rich rhombic dodecahedral skeleton framework with less Pt at ⟨100⟩ vertices. The ability to gain evidence of local surface enrichment that varies with the crystallographic orientation of facets and vertices is expected to provide significant insight toward the development of nanoparticles for sensing, medicalimaging, and catalysis.
机译:已知纳米颗粒的性质主要取决于其局部化学性质,但是表征纳米级的三维(3D)元素偏析具有很高的挑战性。扫描透射电子显微镜(STEM)断层成像是能够测量无机纳米粒子局部化学的少数技术之一,但是常规方法由于赋予高电子剂量而经常失败。在这里,我们演示了一种新的光谱单粒子重建方法的实现,该方法基于结构生物学家开发的方法。我们将此技术应用于PtNi纳米催化剂的成像,并发现了新的证据,证明了富Pt核,富Ni的空心八面体中间壳和富Pt的菱形十二面体骨架构架与复杂的不均匀合金化,Pt在⟨100less顶点。能够获得随表面和顶点的晶体学取向而变化的局部表面富集证据的能力有望为传感,医学纳米颗粒的发展提供重要的见识。成像和催化。

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