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Competing Forces in the Self-Assembly of Coupled ZnO Nanopyramids

机译:ZnO纳米金字塔偶联体自组装中的竞争力

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摘要

Self-assembly (SA) of nanostructures has recently gained increasing interest. A clear understanding of the process is not straightforward since SA of nanoparticles is a complex multiscale phenomenon including different driving forces. Here, we study the SA between aluminum doped ZnO nanopyramids into couples by combining inorganic chemistry and advanced electron microscopy techniques with atomistic simulations. Our results show that the SA of the coupled nanopyramids is controlled first by morphology, as coupling only occurs in the case of pyramids with well-developed facets of the basal planes. The combination of electron microscopy and atomistic modeling reveals that the coupling is further driven by strong ligand ligand interaction between the bases of the pyramids as dominant force, while screening effects due to Al doping or solvent as well as core-core interaction are only minor contributions. Our combined approach provides a deeper understanding of the complex interplay between the interactions at work in the coupled SA of ZnO nanopyramids.
机译:纳米结构的自组装(SA)最近获得了越来越多的关注。由于纳米颗粒的SA是一种复杂的多尺度现象,包括不同的驱动力,因此对过程的清晰理解并不简单。在这里,我们通过结合无机化学和先进的电子显微镜技术以及原子模拟,研究了铝掺杂的ZnO纳米金字塔成对之间的SA。我们的结果表明,偶联的纳米金字塔的SA首先受形态控制,因为偶联仅发生在具有发达的基面刻面的金字塔的情况下。电子显微镜和原子建模的结合表明,偶合基团之间的强配体配位体相互作用作为主导力,进一步推动了偶联,而铝掺杂或溶剂以及核-核相互作用引起的筛选效应只是很小的贡献。我们的组合方法提供了对ZnO纳米金字塔偶联SA中相互作用之间复杂相互作用的更深刻理解。

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