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首页> 外文期刊>Small >Combining X-Ray Whole Powder Pattern Modeling, Rietveld and Pair Distribution Function Analyses as a Novel Bulk Approach to Study Interfaces in Heteronanostructures: Oxidation Front in FeO/Fe_3O_4 Core/Shell Nanoparticles as a Case Study
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Combining X-Ray Whole Powder Pattern Modeling, Rietveld and Pair Distribution Function Analyses as a Novel Bulk Approach to Study Interfaces in Heteronanostructures: Oxidation Front in FeO/Fe_3O_4 Core/Shell Nanoparticles as a Case Study

机译:结合X射线整体粉末图案建模,RIETVELD和配对分布功能分析为杂核糖结构研究界面的新型散装方法:FEO / FE_3O_4核/壳纳米粒子氧化前沿为例

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摘要

Understanding the microstructure in heterostructured nanoparticles is crucial to harnessing their properties. Although microscopy is ideal for this purpose, it allows for the analysis of only a few nanoparticles. Thus, there is a need for structural methods that take the whole sample into account. Here, a novel bulk-approach based on the combined analysis of synchrotron X-ray powder diffraction with whole powder pattern modeling, Rietveld and pair distribution function is presented. The microstructural temporal evolution of FeO/Fe_3O_4 core/shell nanocubes is studied at different time intervals. The results indicate that a two-phase approach (FeO and Fe_3O_4) is not sufficient to successfully fit the data and two additional interface phases (FeO and Fe_3O_4) are needed to obtain satisfactory fits, i.e., an onion-type structure. The analysis shows that the Fe_3O_4 phases grow to some extent (≈1 nm) at the expense of the FeO core. Moreover, the FeO core progressively changes its stoichiometry to accommodate more oxygen. The temporal evolution of the parameters indicates that the structure of the FeO/Fe_3O_4 nanocubes is rather stable, although the exact interface structure slightly evolves with time. This approach paves the way for average studies of interfaces in different kinds of heterostructured nanoparticles, particularly in cases where spectroscopic methods have some limitations.
机译:理解异质结构纳米颗粒中的微观结构对于利用其性质至关重要。虽然显微镜是理想的,但它允许分析仅几个纳米颗粒。因此,需要考虑整个样本的结构方法。这里,提出了一种基于Syschrotron X射线粉末衍射的组合分析的新型批量 - 方法,具有全粉末图案建模,RIETVELD和对分布功能。在不同的时间间隔研究了Feo / Fe_3O_4芯/壳纳米孔的微结构时间演化。结果表明,两相方法(FEO和FE_3O_4)不足以成功地拟合数据,并且需要两种附加接口相(FEO和FE_3O_4)以获得令人满意的配合,即洋葱型结构。分析表明,Fe_3O_4阶段以费用为一定程度(≈1nm)。此外,FeO核心逐渐改变其化学计量以适应更多的氧气。参数的时间演变表明Feo / Fe_3O_4纳米轴的结构相当稳定,尽管确切的界面结构略微随时间演变。这种方法为不同种类的异质结构纳米颗粒的界面的平均研究铺平了道路,特别是在光谱方法具有一些限制的情况下。

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