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金属纳米壁光栅透明电极:在高入射角下实现高光学透过率且衍射最小。

Metal-nanowall grating transparent electrodes: achieving high optical transmittance at high incident angles with minimal diffraction.

作者信息

Kuang Ping, Park Joong-Mok, Liu Geyuan, Ye Zhuo, Leung Wai, Chaudhary Sumit, Lynch David, Ho Kai-Ming, Constant Kristen

机构信息

Department of Materials Science and Engineering, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Opt Express. 2013 Jan 28;21(2):2393-401. doi: 10.1364/OE.21.002393.

Abstract

A novel architecture has been employed to fabricate transparent electrodes with high conductivity and high optical transmittance at high incident angles. Soft lithography is used to fabricate polymer grating patterns onto which thin metallic films are deposited. Etching removes excess metal leaving tall walls of metal. Polymer encapsulation of the structure both protects the metal and minimizes diffraction. Transmission is dependent upon the height of the walls and encapsulation and varies from 60% to 80% for structures with heights of 1400 nm to 300 nm. In encapsulated structures, very little distortion is visible (either parallel to or perpendicular to standing walls) even at viewing angles 60° from the normal. Diffraction is at characterized through measurement of intensity for zeroth through third order diffraction spots. Encapsulation is shown to significantly reduce diffraction. Measurements are supported by optical simulations.

摘要

一种新颖的架构已被用于制造在高入射角下具有高导电性和高光学透射率的透明电极。软光刻技术用于制造聚合物光栅图案,然后在其上沉积金属薄膜。蚀刻去除多余的金属,留下高高的金属壁。对该结构进行聚合物封装既能保护金属,又能将衍射降至最低。透射率取决于壁的高度和封装情况,对于高度在1400纳米至300纳米之间的结构,透射率在60%至80%之间变化。在封装结构中,即使在与法线成60°的视角下,也几乎看不到明显的失真(无论是平行于还是垂直于直立壁)。通过测量零阶至三阶衍射光斑的强度来表征衍射情况。结果表明,封装能显著降低衍射。测量结果得到了光学模拟的支持。

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