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Self-assembly of segmented anisotropic particles: Tuning compositional anisotropy to form vertical or horizontal arrays

机译:分段各向异性粒子的自组装:调整成分各向异性以形成垂直或水平阵列

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Columnar arrays of anisotropic nano- and microparticles, in which the long axes of the particles are oriented perpendicular to the substrate, are of interest for photovoltaics and other applications. Array assembly typically requires applied electric or magnetic fields and/or controlled drying, which are challenging over large areas. Here, we describe a scalable approach to self-assemble multicomponent nanowires into columnar arrays. Self-assembly of partially etched nanowires (PENs) occurred spontaneously during sedimentation from suspension, without drying or applied fields. PENs, which have segments that are either gold or "empty" (solvent-filled) surrounded by a silica shell, were produced from striped metal nanowires by first coating with silica and then removing sacrificial segments by acid etching. Electrostatic repulsion between the particles was necessary for array assembly; however, details of PEN surface chemistry were relatively unimportant. The aspect ratio and relative center of mass (COM) of the PENs were important for determining whether the PEN long axes were vertically or horizontally aligned with respect to the underlying substrate. Arrays with predominantly vertically aligned particles were achieved for PENs with a large offset in COM relative to the geometric center, while other types of PENs formed horizontal arrays. Assemblies were formed over >10 cm2 areas, with over 60% of particles standing. We assessed array uniformity and reproducibility by imaging many positions within each sample and performing multiple assemblies of differently segmented PENs. This work demonstrates the versatility of gravity-driven PEN array assembly and provides a framework for designing other anisotropic particle systems that self-assemble into columnar arrays.
机译:各向异性的纳米和微粒的圆柱状阵列,其中粒子的长轴垂直于基板取向,对于光伏和其他应用很重要。阵列组装通常需要施加电场或磁场和/或受控干燥,这在大面积上具有挑战性。在这里,我们描述了一种可扩展的方法,可将多组分纳米线自组装成柱状阵列。部分蚀刻的纳米线(PEN)的自组装在悬浮过程中自发发生,没有干燥或施加电场。通过首先用二氧化硅涂覆,然后通过酸蚀刻去除牺牲性片段,由条状金属纳米线生产出PEN,其具有被二氧化硅壳包围的金或“空”(充满溶剂的)链段。粒子之间的静电排斥是阵列组装所必需的;但是,PEN表面化学的细节并不重要。 PEN的纵横比和相对质量中心(COM)对于确定PEN长轴相对于下面的基板是垂直还是水平对齐很重要。对于COM相对于几何中心偏移较大的PEN,可以实现具有主要垂直排列的粒子的阵列,而其他类型的PEN则形成水平阵列。组件在大于10 cm2的区域上形成,超过60%的粒子直立。我们通过对每个样品中的许多位置进行成像并执行不同分段的PEN的多个组装来评估阵列的一致性和可重复性。这项工作演示了重力驱动的PEN阵列组件的多功能性,并提供了一个框架来设计自组装成圆柱阵列的其他各向异性粒子系统。

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