标题: 金属奈米阵列结构于塑胶基材上光学性质研究
The study of metal nano-structure array's optical properties on plastic
作者: 涂正中
Cheng-Chung Tu
周长彬
Chang-Ping Chou
机械工程学系
关键字: 奈米压印;常压电浆;蛾眼结构;光学性质;nano-imprint;Atmosphere Plasma;moth structure;optical properties
公开日期: 2007
摘要: 随着科技的演进发展,人类对于视觉的享受要求越来越高,而光线特性的展现显然成为一门重要的课题,抗反射膜大多常利用镀多层膜的方式来实现,而有别于过去近年来一种采用3D次波长结构制作抗反射层,以增进材料表面光线穿透并降低反射率之研究颇受重视。本论文采用时域有限差分(finite difference time domain, FDTD)之数值方法分析模拟可见光波段3D次波长结构之抗反射光学特性。继之于塑胶基材表面以奈米压印方式制作圆锥形蛾眼3D次波长结构,并检验其光学性质。最后于次波长结构表面镀制金属薄膜,制作完成一种具备可见光低反射率及红外光低穿透率效果之隔热膜片。于奈米光学模拟研究,当高宽比≥0.8时,在波长250nm~800nm范围内其反射率均小于1%。实际之结构制作系于PMMA、PC及PET等塑胶材料表面以热压印及紫外光固化成型结构。经验证实作结构之光学性质与FDTD数值模拟结果相当一致。在此类次波长结构表面镀制金、银两种具备3D次波长形状之金属薄膜,展现了与一般平面金属薄膜的不同光学性质。以25nm厚度之银薄膜为例,3D银薄膜其反射率由平面薄膜之47.6%大幅降低为10.6%(于入射光波长550nm时),此结果得以实际对应于隔热膜产品需求。
With the improvement of technology, the demand for entertainment by human beings becomes higher and higher, therefore, the characteristics of light obviously become the important topic. Anti-reflection film is usually manufactured by coating method. However, recently the use of anti-reflection (AR) structured surface has been proposed as an applicable alternative based on both the theoretical and the experimental study. In this article, antireflection structured surface was analyzed by the finite difference time domain (FDTD) method in the visible light spectrum and has been successfully fabricated on plastic substrate by nano-imprint process. The optical properties, include transmittance and reflectance were inspected. In addition, two kinds of metal thin films (gold and silver) were coated on the 3-D sub-wavelength nanostructure surface to examine their optical properties. It was found that the metal-coated AR structures perform well with very low reflectance in visible range and low transmittance in infrared range. This special optical property can be applied in window film to reduce the heat caused by IR absorption. The FDTD numerical calculation was used to analyze the AR structured surface by the designed profile 3-D conical structure(moth-eye structure). It showed the antireflection (AR) effect (reflectance<1%) when the aspect ratio of the 3D structure was larger than 0.8. In the nano-imprint process, hot embossing and UV curing process were applied to generate 3D nano-structure on plastic substrate as PMMA,PC and PET. The optical property of the fabricated polymer film showed good agreement with the simulation result. In addition, the metal thin films on 3D nano-structure showed much better optical reflection performance compared with the films coating on the flat PET substrate. It also showed that the reflectance of 25 nm-thick silver film on the moth-eye structure can be decreased from 47.6% ( the reflectance of flat silver film with 25nm-thick ) to 10.6% at the entrance wave length equal to 550 nm. The results are very useful for the commercial application of window film product.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009514512
http://hdl.handle.net/11536/38501
显示于类别:Thesis


文件中的档案:

  1. 451201.pdf

If it is a zip file, please download the file and unzip it, then open index.html in a browser to view the full text content.