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通过纳米焊接制备的形状可控三维周期性金属纳米结构

Shape-Controlled 3D Periodic Metal Nanostructures Fabricated via Nanowelding.

作者信息

Zhao Zhi-Jun, Shin Sang-Ho, Choi Dae-Geun, Park Sang-Hu, Jeong Jun-Ho

机构信息

Graduate School of Mechanical Engineering, Pusan National University, Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan, 609-735, Republic of Korea.

Department of Nano Manufacturing Technology, Korea Institute of Machinery and Materials, 156, Gajeongbuk-ro, Yuseong-gu, Daejeon, 34113, South Korea.

出版信息

Small. 2018 Feb;14(6). doi: 10.1002/smll.201703102. Epub 2017 Dec 14.

Abstract

A novel method for fabricating 3D metallic nanostructures to be used in polarized color filters based on nanoimprint lithography, electron-beam evaporation, and nanowelding is proposed. The shape of the nanostructures can be controlled by adjusting the temperature for the nanowelding process. Ag nanowires deposited on polymer patterns are accumulated by the nanowelding process to build up diverse 3D nanostructures. The morphologies of the fabricated 3D nanostructures are analyzed using scanning electron microscopy, atomic force microscopy, and focused ion beam; the heating temperature is varied from 90 to 130 °C in steps of 10 °C. In order to analyze the recrystallization phenomenon after welding, transmission electron microscopy is utilized. The 3D metallic nanostructure has different morphologies and optical properties corresponding to welding temperature conditions and accumulated layer thicknesses. Based on preliminary experimental results, the process parameters are optimized and a polarized color filter is fabricated. Optical characteristics of the filter are evaluated using polarizer and spectrometer. Through this work, it is shown that the proposed method is an effective way to realize various 3D metallic nanostructures for special optical properties, therefore the method based on nanowelding can be utilized in fabrication of functional metamaterials, optical filters, biosensors, and others.

摘要

提出了一种基于纳米压印光刻、电子束蒸发和纳米焊接制造用于偏振滤光片的三维金属纳米结构的新方法。纳米结构的形状可通过调整纳米焊接过程的温度来控制。沉积在聚合物图案上的银纳米线通过纳米焊接过程累积,以构建各种三维纳米结构。使用扫描电子显微镜、原子力显微镜和聚焦离子束分析所制备的三维纳米结构的形态;加热温度以10℃的步长从90℃变化到130℃。为了分析焊接后的再结晶现象,利用了透射电子显微镜。三维金属纳米结构具有与焊接温度条件和累积层厚度相对应的不同形态和光学特性。基于初步实验结果,优化了工艺参数并制造了偏振滤光片。使用偏振器和光谱仪评估滤光片的光学特性。通过这项工作表明,所提出的方法是实现具有特殊光学特性的各种三维金属纳米结构的有效途径,因此基于纳米焊接的方法可用于制造功能性超材料、光学滤光片、生物传感器等。

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