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Bidisperse Nanospheres Jammed on a Liquid Surface

机译:在液体表面上堵塞纳米球

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Jammed packings of bidisperse nanospheres were assembled on a nonvolatile liquid surface and visualized to the single-particle scale by using an in situ scanning electron microscopy method. The PEGylated silica nanospheres, mixed at different number fractions and size ratios, had large enough in-plane mobilities prior to jamming to form uniform monolayers reproducibly. From the collected nanometer-resolution images, local order and degree of mixing were assessed by standard metrics. For equimolar mixtures, a large-to-small size ratio of about 1.5 minimized correlated metrics for local orientational and positional order, as previously predicted in simulations of bidisperse disk jamming. Despite monolayer uniformity, structural and depletion interactions caused spheres of a similar size to cluster, a feature evident at size ratios above 2. Uniform nanoparticle monolayers of high packing disorder are sought in many liquid interface technologies, and these experiments outlined key design principles, buttressing extensive theory/simulation literature on the topic.
机译:将纳米球体的卡住填料组装在非挥发性液体表面上,并通过使用扫描电子显微镜法使用α1>可视化为单粒子级。在不同数量分数和尺寸比下混合的聚乙二醇化的二氧化硅纳米球在干扰之前足够大的面内迁移率,以可重复地形成均匀的单层。从收集的纳米分辨率图像,通过标准度量评估局部顺序和混合程度。对于等摩尔混合物,如前所述,对于局部取向和位置顺序,大约小的尺寸比率为约1.5,最小化相关度量,如前所述,如前所述。尽管单层均匀性,结构和耗尽相互作用导致相似尺寸的球体,其尺寸比率明显。在尺寸比率上显而易见。寻求多种液体界面技术的均匀纳米颗粒单层,这些实验概述了关键设计原理,概述关于主题的广泛理论/仿真文献。

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