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一种应变诱导亚波长结构,实现无雾且高度透明的柔性塑料基底。

A strain induced subwavelength-structure for a haze-free and highly transparent flexible plastic substrate.

机构信息

Department of Materials Science and Engineering, Pohang University of Science Technology (POSTECH), Pohang 790-784, Korea.

出版信息

Nanoscale. 2018 Aug 9;10(31):14868-14876. doi: 10.1039/c8nr00998h.

Abstract

This paper presents a method to produce subwavelength-scale (<250 nm) AgCl nanostructures on a flexible plastic film, which is indispensable for highly efficient flexible displays. Using Cl2 plasma treatment on an Ag-coated plastic film, AgCl nanostructures were produced through the reaction of Ag atoms with Cl radicals. During the reaction, the volume of AgCl expands, leading to drastically changed surface morphology from a two-dimensional (2D) flat Ag surface to a 3D subwavelength-scale AgCl nanostructure. The optical properties of AgCl on the plastic film were remarkably enhanced from 89.6% to 93.4% and the average transmittance ranged between 400 and 800 nm, while the average haze was retained below 0.3%. Consequently, OLEDs based on the subwavelength-scale AgCl nanostructure had an enhanced luminance efficiency (88.6 cd A-1 at 1000 cd m-2) of up to 10.7% without modifying the angular emission pattern, superior to that of the as-received PI film (efficiency of 80.0 cd A-1). The nanostructure enhances the transmission of electromagnetic (EM) waves as well as prohibits the scattering of EM waves, which was confirmed by finite-difference time-domain simulation and rigorous coupled wave analysis.

摘要

本文提出了一种在柔性塑料薄膜上制备亚波长(<250nm)AgCl 纳米结构的方法,这对于高效柔性显示器来说是必不可少的。通过对Ag 涂层塑料薄膜进行 Cl2 等离子体处理,Ag 原子与 Cl 自由基反应生成 AgCl 纳米结构。在反应过程中,AgCl 的体积膨胀,导致 Ag 表面的二维(2D)平坦形貌急剧转变为 3D 亚波长尺度的 AgCl 纳米结构。AgCl 在塑料薄膜上的光学性能从 89.6%显著提高到 93.4%,平均透过率在 400nm 至 800nm 之间,平均雾度保持在 0.3%以下。因此,基于亚波长 AgCl 纳米结构的 OLED 在不改变角发射模式的情况下,亮度效率提高了 10.7%(在 1000cd/m2 时为 88.6cd A-1),优于原始 PI 薄膜(效率为 80.0cd A-1)。该纳米结构增强了电磁波的透射,同时阻止了电磁波的散射,这一点通过有限差分时域模拟和严格耦合波分析得到了证实。

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