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具有 Ag-TiO 复合纳米线的 8 英寸晶圆级柔性偏振相关滤色片。

Eight Inch Wafer-Scale Flexible Polarization-Dependent Color Filters with Ag-TiO Composite Nanowires.

机构信息

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 , Daejeon 305-343 , South Korea.

出版信息

ACS Appl Mater Interfaces. 2018 Mar 14;10(10):9188-9196. doi: 10.1021/acsami.8b02128. Epub 2018 Mar 2.

Abstract

In this study, 8 in. wafer-scale flexible polarization-dependent color filters with Ag-TiO composite nanowires have been fabricated using nanoimprint and E-beam evaporation. The filters change their color via a simple rotation of the polarizer. In addition, the color of the filter can be controlled by altering the thickness of the Ag and TiO nanowires deposited on the polymer patterns. Polarization-dependent color filters were realized by selective inhibition of transmission using the plasmonic resonance at the insulator/metal/insulator nanostructure interface, which occurs at particular wavelengths for the transverse magnetic polarizations. Special colors, including purple, blue, green, yellow, and pink, could be obtained with high transmission beyond 65% by varying the thickness of the deposited Ag and TiO nanowires on the periodic polymer pattern under transverse magnetic polarization. In addition, a continuous color change was achieved by varying the polarization angle. Last, numerical simulations were implemented in comparison with the experimental results, and the mechanism was explained. We believe that this simple and cost-effective method can be applied to processes such as anticounterfeiting and holographic imaging as well as to color displays.

摘要

在这项研究中,使用纳米压印和电子束蒸发技术制造了具有 Ag-TiO 复合纳米线的 8 英寸晶圆级柔性偏振相关彩色滤光片。通过简单地旋转偏振器,滤光片可以改变颜色。此外,通过改变沉积在聚合物图案上的 Ag 和 TiO 纳米线的厚度,可以控制滤光片的颜色。偏振相关滤光片通过在绝缘体/金属/绝缘体纳米结构界面处的等离子体共振来实现对传输的选择性抑制,这种等离子体共振在横向磁场偏振的特定波长下发生。通过在横向磁场偏振下改变周期性聚合物图案上沉积的 Ag 和 TiO 纳米线的厚度,可以获得特殊颜色,包括紫色、蓝色、绿色、黄色和粉红色,其透过率超过 65%。此外,通过改变偏振角可以实现连续的颜色变化。最后,进行了数值模拟,并与实验结果进行了比较,解释了其机制。我们相信,这种简单且具有成本效益的方法可以应用于防伪和全息成像以及彩色显示器等领域。

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