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Evaluation of ordering in single-component and binary nanocrystal superlattices by analysis of their autocorrelation functions

机译:通过分析其自相关函数来评估单组分和二元纳米晶超晶格的有序性

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摘要

Self-assembly of colloidal nanocrystals and other nanosized building blocks has led to numerous large-scale and well-ordered superstructures. To quantify the superlattice quality we present a simple and efficient method, based on analysis of the autocorrelation function to determine characteristic order parameters for short-range and long-range ordering. This provides a feedback for further improvements of deposition techniques and self-assembly processes. To show the power of this method, it is applied to various two-dimensional ordered single component and binary nanocrystal assemblies. A quantitative comparison of the normalized long-range order parameter for various colloidal or epitaxially grown superlattice structures evidences that the long-range ordering in monodisperse colloidal superlattices by far supersedes that obtained at best by epitaxially grown quantum dots. Astonishingly, for selected binary nanocrystal superlattices the long-range ordering parameter reaches almost the same values as for single component superlattices. Besides the high sensitivity of the introduced quantification method to lattice imperfections our analysis also reveals any anisotropy in the ordering of the superlattices, which again can be quantified, for example, to identify the areas of highest quality within one specific sample.
机译:胶体纳米晶体和其他纳米级构造块的自组装导致了许多大规模且井井有条的超结构。为了量化超晶格质量,我们在分析自相关函数的基础上提出了一种简单有效的方法,以确定短程和长程排序的特征阶参数。这为进一步改进沉积技术和自组装工艺提供了反馈。为了展示这种方法的强大功能,将其应用于各种二维有序的单组分和二元纳米晶体组件。各种胶体或外延生长的超晶格结构的归一化的远程有序参数的定量比较表明,单分散胶体超晶格中的远距离有序取代了最好由外延生长的量子点获得的长程有序。令人惊讶的是,对于选定的二元纳米晶超晶格,其长程有序参数几乎达到与单组分超晶格相同的值。除了所引入的定量方法对晶格缺陷的高敏感性外,我们的分析还揭示了超晶格顺序中的任何各向异性,这些各向异性可以再次量化,例如,以鉴定一个特定样品中质量最高的区域。

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