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3D superstructures with an orthorhombic lattice assembled by colloidal PbS quantum dots

机译:3 d上层建筑斜方晶系的晶格通过胶体PbS量子点组装

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摘要

We report a new type of metamaterial comprising a highly ordered 3D network of 3-7 nm lead sulfide quantum dots self-assembled in an organic matrix formed by amphiphilic ligands (oleic acid molecules). The obtained 3D superstructures possess an orthorhombic lattice with the distance between the nanocrystals as large as 10-40 nm. Analysis of self-assembly and destruction of the superstructures in time performed by a SAXS technique shows that their morphology depends on the quantity of amphiphilic ligands and width of the quantum dot size and its distribution. Formation of the superstructures is discussed in terms of a model describing the lyotropic crystal formation by micelles from three-phase mixtures. The results show that the organic molecules possessing surfactant properties and capable of forming micelles with nanoparticles as a micelle core can be utilized as building blocks for the creation of novel metamaterials based on a highly ordered 3D network of semiconductors, metals or magnetic nanoparticles.
机译:我们报告一种新型超材料组成高度有序的3 d网络3 - 7纳米硫化铅量子点自组装有机基体由两亲性配体(油酸分子)。拥有一个斜方晶格距离纳米晶体之间10-40海里一样大。分析的自组装和破坏上层建筑由一枝技术显示了它们的形态取决于两亲性配体的数量和宽度量子点的大小及其分布。讨论了上层建筑的形成的一个模型描述了易溶的晶体从三相混合物形成的胶束。结果表明,有机分子具有表面活性剂的属性和能力与纳米颗粒作为胶束形成胶束核心可以利用作为构建块基于一个高度创造新颖的超材料命令3 d网络半导体、金属或磁性纳米粒子。

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