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Solvent controlled 2D structures of bottom-up fabricated nanoparticle superlattices

机译:自下而上制备的纳米粒子超晶格的溶剂控制二维结构

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We demonstrate that oleyl phosphate ligand-stabilized iron oxide nanocubes as building blocks can be assembled into 2D supercrystalline mono- and multilayers on flat YSZ substrates within a few minutes using a simple spin-coating process. As a bottom-up process, the growth takes place in a layer-by-layer mode and therefore by tuning the spin-coating parameters, the exact number of deposited monolayers can be controlled. Furthermore, ex situ scanning electron and atomic force microscopy as well as X-ray reflectivity measurements give evidence that the choice of solvent allows the control of the lattice type of the final supercrystalline monolayers. This observation can be assigned to the different Hansen solubilities of the solvents used for the nanoparticle dispersion because it determines the size and morphology of the ligand shell surrounding the nanoparticle core. Here, by using toluene and chloroform as solvents, it can be controlled whether the resulting monolayers are ordered in a square or hexagonal supercrystalline lattice.
机译:我们证明油磷酸ligand-stabilized氧化铁nanocubes积木可以组装成2 dsupercrystalline mono -和多层平的YSZ基质在几分钟内使用简单的旋转涂布过程。过程中,发生在一个增长分层技术模式,因此通过调优旋转涂布参数的准确数字单层沉积可以控制。此外,非原位扫描电子和原子力显微镜和x射线反射率测量提供证据的选择溶剂允许的晶格类型的控制最后supercrystalline单层膜。观察可以分配给不同的汉森所用的溶剂的溶解能力纳米颗粒分散,因为它决定了大小和形态的配体壳纳米颗粒周围的核心。甲苯和氯仿为溶剂,它可以结果单层膜是否控制命令在一个正方形或六角supercrystalline晶格。

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