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Non-destructive quantification of alignment of nanorods embedded in uniaxially stretched polymer films

机译:嵌入在单轴拉伸聚合物薄膜中的纳米棒取向的无损定量

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摘要

Among several methods developed for uniaxial alignment of metallic nanorods for optical applications, alignment by film stretching consists in embedding the rods in a transparent thin film of thermoplastic polymer, followed by simultaneous heating and uniaxial stretching of the composite film. As to the quantification of the resulting alignment, it has been limited to statistical calculations based on microscopic examination, which is incomplete, subject to errors due to geometric distortions of the scanning electron microscope images and destructive, since it involves cutting of samples. In contrast, we present in this paper a non-destructive quantification of the average orientation of the rods, based on a probabilistic approach combined with numerical simulations of absorbance spectra and spectrometric characterization of the composite film. Assuming electromagnetically non-interacting rods, we consider the longitudinal absorbance peak of their ensemble to consist of the superposition of their individual spectra that we obtain by numerical simulation using the size and shape adapted dielectric function of the metal and the finite difference time domain method. The accuracy of the solution depends on the number of discretization intervals, the accuracy of the numerical simulations, and the accurate knowledge of the polydispersity of the rods. For the sake of concreteness, we used nanorods to describe the quantification steps but the method is equally valid for any dichroic particles.
机译:在开发用于光学应用的金属纳米棒的单轴对准的几种方法中,通过膜拉伸的对准包括将棒嵌入热塑性聚合物的透明薄膜中,然后同时加热和单轴拉伸复合膜。关于所得到的对准的量化,由于它涉及到样品的切割,因此它仅限于基于显微镜检查的统计计算,这是不完整的,容易受到由于扫描电子显微镜图像的几何变形和破坏性而引起的误差的影响。相反,我们在本文中基于概率方法,结合吸收光谱的数值模拟和复合膜的光谱表征,对棒的平均取向进行了非破坏性定量。假设电磁非相互作用杆,我们认为其整体的纵向吸收峰由我们各自光谱的叠加组成,这些光谱是通过使用金属的尺寸和形状适应的介电函数以及有限差分时域方法通过数值模拟获得的。解的准确性取决于离散化间隔的数量,数值模拟的准确性以及对棒的多分散性的准确了解。为了具体起见,我们使用纳米棒描述了定量步骤,但该方法对任何二向色性颗粒均有效。

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    《Journal of Applied Physics》 |2014年第11期|1-12|共12页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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