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喷雾辅助层层组装银纳米线的对准:一种制备各向异性纳米复合薄膜的通用方法。

Spray-assisted alignment of Layer-by-Layer assembled silver nanowires: a general approach for the preparation of highly anisotropic nano-composite films.

机构信息

Institut Charles Sadron, CNRS (UPR22), 23 rue du Loess, F-67034 Strasbourg, France.

出版信息

Nanoscale. 2017 Jan 19;9(3):1307-1314. doi: 10.1039/c6nr08045f.

DOI:10.1039/c6nr08045f
PMID:28059411
Abstract

The present article focuses on the build-up and the properties of oriented silver nanowire monolayer films and Layer-by-Layer assembled multilayer films. We describe the template-free oriented spray-assisted assembly of silver nanowires at solid/air-interfaces using Grazing Incidence Spraying, a simple and versatile approach that allows the formation of highly oriented thin films with a tunable density and in-plane orientation. Depending on the spraying conditions the nematic order parameter, which describes the angular spread of misaligned nanowires, can be as high as 0.98 (a value of 1.00 corresponding to a perfectly parallel alignment). The combination with the Layer-by-Layer assembly allows building multilayer thin films possessing in-plane anisotropy. In order to demonstrate that the local alignment does not cancel out on the macroscopic scale but leads to direction-dependent properties, we use linearly polarized UV-Vis-NIR spectroscopy to probe the selective excitation of the transverse and longitudinal localized plasmon resonances of the nanowires. The polarization efficiency of the thin films increases strongly with the in-plane density, the degree of orientation, and the number of silver nanowire layers. Multilayer films containing 4 layers of nanowires oriented in the same direction reach a polarization efficiency of up to 97% in the near-infrared region.

摘要

本文重点介绍了定向银纳米线单层膜和层层组装多层膜的构建和性质。我们描述了使用掠入射喷涂法在固/气界面上无模板定向喷雾辅助组装银纳米线的方法,这是一种简单且通用的方法,可形成具有可调密度和平面取向的高度定向薄膜。根据喷涂条件的不同,各向异性参数(描述取向不正的纳米线的角度分布)可以高达 0.98(值为 1.00 对应于完全平行的取向)。与层层组装相结合可以构建具有面内各向异性的多层薄膜。为了证明局部取向不会在宏观尺度上抵消,而是导致依赖于方向的性质,我们使用线偏振紫外可见近红外光谱法来探测纳米线的横向和纵向局域等离子体共振的选择性激发。薄膜的偏振效率随平面密度、取向度和银纳米线层数的增加而强烈增加。在近红外区域,取向相同的 4 层纳米线组成的多层膜的偏振效率高达 97%。

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