为提高量子点薄膜的光学性能,采用轨迹刻蚀模成型微凹窝/柱阵列

Zongtao Li, Xueting Tang, Muwu Li, Binhai Yu, Yuling Hu, Xinrui Ding
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引用次数: 0

摘要

近年来,荧光粉薄膜已广泛应用于显示、照明等领域。在荧光粉薄膜上制造结构以提高其光学性能的方法已引起学术界和工业界的广泛关注。目前制造结构薄膜的方法主要是通过压印技术。然而,晶体硅或图案蓝宝石衬底应用于转移衬底,这是麻烦和昂贵的。本文介绍了一种用高速粒子轰击聚碳酸酯薄膜(PC)形成具有微孔结构的磷光膜并具有转移效应的轨迹蚀刻模具。这个过程简单而有效。同时,PC膜转移的微柱结构PDMS膜(MPS-PDMS膜)具有离散分布的微柱结构。测量了它们的光学性能,与非结构化PDMS膜(US-PDMS膜)相比,雾度提高了12.06%。随后,利用MPS-PDMS薄膜二次制备了微窝结构量子点薄膜(MDS-QDs薄膜),使其具有窝结构。与非结构量子点薄膜(US-QDs薄膜)相比,MDS-QDs薄膜的红光功率提高了7.7%。因此,结构量子点薄膜在亮度和显示方面显示出巨大的潜在价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micro-dimple/pillar array molded by a track-etching mold for improving the optical performance of quantum dot film
Recently, phosphor films have been widely used in display, illumination and other fields. Methods of fabricating structures on phosphor films to enhance their optical properties have attracted great attention in academia and industry. Current methods to fabricate a structured film are mainly by imprinting techniques. However, crystalline silicon or a patterned sapphire substrate are applied to the transfer substrate, which is cumbersome and expensive. This paper describes a track-etching mold, prepared by bombarding a polycarbonate film (PC) with high-speed particles to form phosphor film with microporous structure, which also has a transfer effect. The process is simple and efficient. Simultaneously, the micro-pillar structure PDMS film (MPS-PDMS film) transferred by the PC film has a discrete distribution of micro-pillar structures. Their optical performance was measured and the haze was improved by 12.06% compared with the unstructured PDMS film (US-PDMS film). Subsequently, the micro-dimples structure quantum dots film (MDS-QDs film) was secondarily fabricated using the MPS-PDMS film to have a dimple structure. The red optical power of MDS-QDs film was improved by 7.7% as compared with the unstructured quantum dot film (US-QDs film). Therefore, the structural QD films shows great potential value in luminance and display.
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