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Development of nanoparticle bulk morphology analysis: a multidomain XRD approach

机译:纳米颗粒体形貌分析的发展:一种多域XRD方法

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The appearance of twin/stacking faults in nanoparticles creates strains affecting the catalytic, optical, and electrical properties of nanomaterials. Currently, there is a lack of experimental tools for a numeric characterization of these defects in samples. Therefore, many structure–property correlations are poorly understood. Here, we report the exploration of the twinning effect on the XRD pattern and its practical application. We developed a new approach focused on the special mutual orientation of periodic fcc segments, domains. Using computational simulations, we found that the more domains, the smaller the height ratio of 220 to 111 diffraction peaks. Knowing this correlation, we performed the XRD bulk morphology and size analysis of Au and AuPt samples. The obtained results were compared with the results of TEM and SAXS analyses. In a broader context, our multidomain XRD method is a simple alternative to TEM which enables unraveling the structure–property correlations in NP studies.
机译:双/堆积层错的外观纳米粒子产生影响催化、光学和电学性质纳米材料。实验工具的数字特征这些缺陷的样本。组织性能的相关性都很差理解。XRD的孪生效应及其模式实际的应用程序。侧重于特殊方法相互的方向周期性fcc段,域。通过计算模拟,我们发现域名越多,越小高度的比例220年到111年的衍射峰。相关性,我们进行了XRD散装形态和大小非盟和AuPt样本分析。获得的结果与结果TEM和粉煤灰的分析。我们是一个简单的多畴的XRD方法替代TEM可以解开在NP研究中组织性能的相关性。

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