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使用倾斜角沉积法制备具有高吸收介质的超薄彩色薄膜。

Fabrication of Ultra-thin Color Films with Highly Absorbing Media Using Oblique Angle Deposition.

作者信息

Yoo Young Jin, Lee Gil Ju, Jang Kyung-In, Song Young Min

机构信息

School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology.

Department of Robotics Engineering, Daegu Gyeongbuk Institute of Science and Technology;

出版信息

J Vis Exp. 2017 Aug 29(126):56383. doi: 10.3791/56383.

Abstract

Ultra-thin film structures have been studied extensively for use as optical coatings, but performance and fabrication challenges remain.  We present an advanced method for fabricating ultra-thin color films with improved characteristics. The proposed process addresses several fabrication issues, including large area processing. Specifically, the protocol describes a process for fabricating ultra-thin color films using an electron beam evaporator for oblique angle deposition of germanium (Ge) and gold (Au) on silicon (Si) substrates.  Film porosity produced by the oblique angle deposition induces color changes in the ultra-thin film. The degree of color change depends on factors such as deposition angle and film thickness. Fabricated samples of the ultra-thin color films showed improved color tunability and color purity. In addition, the measured reflectance of the fabricated samples was converted into chromatic values and analyzed in terms of color. Our ultra-thin film fabricating method is expected to be used for various ultra-thin film applications such as flexible color electrodes, thin film solar cells, and optical filters. Also, the process developed here for analyzing the color of the fabricated samples is broadly useful for studying various color structures.

摘要

超薄薄膜结构作为光学涂层已得到广泛研究,但性能和制造方面仍存在挑战。我们提出了一种制造具有改进特性的超薄彩色薄膜的先进方法。所提出的工艺解决了几个制造问题,包括大面积加工。具体而言,该方案描述了一种使用电子束蒸发器在硅(Si)衬底上以倾斜角度沉积锗(Ge)和金(Au)来制造超薄彩色薄膜的工艺。倾斜角度沉积产生的薄膜孔隙率会导致超薄薄膜发生颜色变化。颜色变化程度取决于沉积角度和薄膜厚度等因素。制造出的超薄彩色薄膜样品显示出改进的颜色可调性和颜色纯度。此外,将制造样品的测量反射率转换为色度值并进行颜色分析。我们的超薄薄膜制造方法有望用于各种超薄薄膜应用,如柔性彩色电极、薄膜太阳能电池和光学滤波器。而且,这里开发的用于分析制造样品颜色的工艺对于研究各种颜色结构具有广泛的用途。

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