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首页> 外文期刊>ACS applied materials & interfaces >Highly Oriented Nanowire Thin Films with Anisotropic Optical Properties Driven by the Simultaneous Influence of Surface Templating and Shear Forces
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Highly Oriented Nanowire Thin Films with Anisotropic Optical Properties Driven by the Simultaneous Influence of Surface Templating and Shear Forces

机译:高度取向的纳米线薄膜,具有通过表面模板和剪切力的同时影响驱动的各向异性光学性能

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摘要

The functional properties of nanoparticle thin films depend strongly on the arrangement of the nanoparticles within the material. In particular, anisotropic optoelectronic properties can be achieved through the aligned assembly of 1D nanomaterials such as silver nanowires (AgNWs). However, the control of the hierarchical organization of these nanoscale building blocks across multiple length scales and over large areas is still a challenge. Here, we show that the oriented deposition of AgNWs using grazing incidence spraying of the nano-object suspensions on a substrate comprising parallel surface wrinkles readily produces highly oriented monolayer thin films on macroscopic areas (5 x 5 mm(2)). The use of textured substrates enhances the degree of ordering as compared to flat ones and increases the area over which AgNWs are oriented. The resulting microscopic linear arrangement of AgNWs evaluated by scanning electron microscopy (SEM) reflects in a pronounced macroscopic optical anisotropy measured by conventional polarized UV-vis-NIR spectroscopy. The enhanced ordering obtained when spraying is done in the same direction as the wrinkles makes this approach more robust against small rotational offsets during preparation. On the contrary, the templating effect of the wrinkle topography can even dominate the shear-driven alignment when spraying is performed perpendicular to the wrinkles: the concomitant but opposing influence of topographic confinement (alignment along the wrinkles) and of spray-induced shear forces (orientation along the spraying direction) lead to films in which the predominant orientation of AgNWs gradually changes from one direction to its perpendicular one over the same substrate in a single processing step. This demonstrates that exploiting the subtle balance between shear forces and substrate nanowire interactions mediated by wrinkles offers a new way to control the self-assembly of nanoparticles into more complex patterns.
机译:纳米粒子薄膜的功能性强烈地取决于材料内纳米颗粒的布置。特别地,可以通过诸如银纳米线(AgNW)的1D纳米材料的对齐组件来实现各向异性光电性能。然而,在多个长度尺度和大区域跨越多个长度尺度和大面积的分层组织的控制仍然是一个挑战。这里,我们表明,在包括平行表面皱纹的基板上使用放射入射率喷射纳米物体悬浮液的纳米物体悬浮液的定向沉积容易在宏观区域(& 5×5mm(2))上产生高度取向的单层薄膜。与扁平的相比,使用纹理的基板的使用增强了排序程度,并增加了Agnw的面积取向的区域。通过扫描电子显微镜(SEM)评估的AgNW的显微静脉线性排列反映了通过常规偏振UV-Vis-Nir光谱测量的明显的宏观光学各向异性。当皱纹在相同方向上喷射时获得的增强的顺序使得这种方法在准备期间对小旋转偏移更加稳健。相反,皱纹地形的模板效果甚至可以在垂直于皱纹进行喷涂时占据剪切驱动的对准:伴随但相反的地形限制(沿皱纹的对准)和喷雾引起的剪切力(沿喷射方向的取向)导致膜,其中Agnw的主要取向在单个处理步骤中在同一基板上逐渐从一个方向变化到其垂直的衬底。这表明利用皱纹介导的剪切力和衬底纳米线相互作用的微妙平衡,提供了将纳米颗粒的自组装控制成更复杂的图案的新方法。

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