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Probing compositional variation within hybrid nanostructures

机译:探索混合纳米结构中的成分变化

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We present a detailed analysis of the structural and magnetic properties of solution-grown PtCo-CdS hybrid structures in comparison to similar free-standing PtCo alloy nanoparticles. X-ray absorption spectroscopy is utilized as a sensitive probe for identifying subtle differences in the structure of the hybrid materials. We found that the growth of bimetallic tips on a CdS nanorod substrate leads to a more complex nanoparticle structure composed of a PtCo alloy core and thin CoO shell. The core-shell architecture is an unexpected consequence of the different nanoparticle growth mechanism on the nanorod tip, as compared to free growth in solution. Magnetic measurements indicate that the PtCo- CdS hybrid structures are superparamagnetic despite the presence of a CoO shell. The use of X-ray spectroscopic techniques to detect minute differences in atomic structure and bonding in complex nanosystems makes it possible to better understand and predict catalytic or magnetic properties for nanoscale bimetallic hybrid materials.
机译:我们提出了与类似的自立式PtCo合金纳米粒子相比,溶液生长的PtCo-CdS杂化结构的结构和磁性的详细分析。 X射线吸收光谱法用作灵敏的探针,用于识别杂化材料结构中的细微差异。我们发现,CdS纳米棒基底上双金属尖端的生长会导致由PtCo合金核和薄CoO壳组成的更复杂的纳米粒子结构。与溶液中的自由生长相比,核-壳结构是纳米棒尖端上不同的纳米颗粒生长机制的意外结果。磁性测量表明,尽管存在CoO壳层,但PtCo-CdS杂化结构还是超顺磁性的。使用X射线光谱技术检测复杂纳米系统中原子结构和键的微小差异,可以更好地了解和预测纳米级双金属杂化材料的催化或磁性。

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