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Atomic-resolution spectroscopic imaging of ensembles of nanocatalyst particles across the life of a fuel cell

机译:整个燃料电池寿命中纳米催化剂颗粒集合体的原子分辨率光谱成像

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摘要

The thousand-fold increase in data-collection speed enabled by aberration-corrected optics allows us to overcome an electron microscopy paradox: how to obtain atomic-resolution chemical structure in individual nanoparticles yet record a statistically significant sample from an inhomogeneous population. This allowed us to map hundreds of Pt-Co nanoparticles to show atomic-scale elemental distributions across different stages of the catalyst aging in a proton-exchange-membrane fuel cell, and relate Pt-shell thickness to treatment, particle size, surface orientation, and ordering.
机译:像差校正光学器件使数据收集速度提高了数千倍,这使我们克服了电子显微镜的悖论:如何在单个纳米粒子中获得原子分辨率的化学结构,同时又记录了来自非均质种群的统计学上重要的样本。这使我们能够绘制数百个Pt-Co纳米颗粒的图,以显示质子交换膜燃料电池中催化剂老化的不同阶段的原子级元素分布,并将Pt壳的厚度与处理,粒径,表面取向,和订购。

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