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Superlattice growth and rearrangement during evaporation-induced nanoparticle self-assembly

机译:蒸发诱导纳米粒子自组装过程中的超晶格生长和重排。

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摘要

Understanding the assembly of nanoparticles into superlattices with well-defined morphology and structure is technologically important but challenging as it requires novel combinations of in-situ methods with suitable spatial and temporal resolution. In this study, we have followed evaporation-induced assembly during drop casting of superparamagnetic, oleate-capped gamma-Fe2O3 nanospheres dispersed in toluene in real time with Grazing Incidence Small Angle X-ray Scattering (GISAXS) in combination with droplet height measurements and direct observation of the dispersion. The scattering data was evaluated with a novel method that yielded time-dependent information of the relative ratio of ordered (coherent) and disordered particles (incoherent scattering intensities), superlattice tilt angles, lattice constants, and lattice constant distributions. We find that the onset of superlattice growth in the drying drop is associated with the movement of a drying front across the surface of the droplet. We couple the rapid formation of large, highly ordered superlattices to the capillary-induced fluid flow. Further evaporation of interstitital solvent results in a slow contraction of the superlattice. The distribution of lattice parameters and tilt angles was significantly larger for superlattices prepared by fast evaporation compared to slow evaporation of the solvent.
机译:了解纳米粒子组装成具有明确形态和结构的超晶格在技术上很重要,但是具有挑战性,因为它需要具有适当时空分辨率的原位方法的新颖组合。在这项研究中,我们通过滴注小角度X射线散射(GISAXS)与液滴高度测量和直接测量相结合的方法,实时跟踪了分散在甲苯中的超顺磁性油酸盐封端的γ-Fe2O3纳米球的滴铸过程中的蒸发诱导组装。观察分散情况。散射数据用一种新颖的方法进行评估,该方法产生时间相关的信息,包括有序(相干)和无序粒子的相对比率(非相干散射强度),超晶格倾斜角,晶格常数和晶格常数分布。我们发现干燥滴中超晶格生长的开始与干燥前沿在液滴表面的移动有关。我们将大的,高度有序的超晶格的快速形成与毛细管引起的流体流动耦合起来。间质溶剂的进一步蒸发导致超晶格的缓慢收缩。与溶剂的缓慢蒸发相比,通过快速蒸发制备的超晶格的晶格参数和倾斜角分布明显更大。

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