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用于超窄边框显示器的嵌入反应性核壳聚合物纳米颗粒的高粘性和可持续紫外/热双固化粘合剂

Highly Adhesive and Sustainable UV/Heat Dual-Curable Adhesives Embedded with Reactive Core-Shell Polymer Nanoparticles for Super-Narrow Bezel Display.

作者信息

Lee Jun Hyup

机构信息

Department of Chemical Engineering, Soongsil University, Seoul 06978, Korea.

出版信息

Materials (Basel). 2020 Aug 7;13(16):3492. doi: 10.3390/ma13163492.

Abstract

To achieve the seamless characteristics of displays, liquid crystal (LC) devices need a super-narrow bezel design. This device architecture can be constructed using functional adhesives that possess excellent physical and chemical properties. In this study, mechanically robust ultraviolet (UV)/heat dual-curable adhesives with outstanding reliability and processability have been fabricated using reactive poly(methyl methacrylate) (PMMA)/polyethyleneimine (PEI) core-shell nanoparticles. Their curing characteristics, narrow drawing processability, adhesive strength, elongation at break, and the contact contamination of LCs have been investigated. Compared to conventional adhesive material, the proposed adhesive containing multifunctional PMMA/PEI nanoparticles afforded a high adhesion strength of 40.2 kgf cm and a high elongation of 64.8% due to the formation of a firm crosslinked network with matrix resins comprising bisphenol A epoxy resin and bisphenol A glycerolate dimethacrylate. Moreover, the proposed adhesive showed an excellent narrow drawing width of 1.2 mm, which is a prerequisite for super-narrow bezel display. With regard to LC contamination, it was found that the level of contamination could be remarkably reduced to 61 µm by a high-temperature curing process. This study makes a significant contribution to the development of advanced display, because it provides robust and sustainable display adhesives based on nanomaterials, thereby enhancing the life and sustained operability of displays.

摘要

为实现显示器的无缝特性,液晶(LC)器件需要超窄边框设计。这种器件架构可使用具有优异物理和化学性能的功能性粘合剂来构建。在本研究中,利用反应性聚甲基丙烯酸甲酯(PMMA)/聚乙烯亚胺(PEI)核壳纳米粒子制备了具有机械强度高、可靠性和加工性出色的紫外(UV)/热双固化粘合剂。研究了它们的固化特性、窄幅拉伸加工性、粘合强度、断裂伸长率以及液晶的接触污染情况。与传统粘合剂材料相比,所提出的含有多功能PMMA/PEI纳米粒子的粘合剂由于与包含双酚A环氧树脂和双酚A甘油酸二甲基丙烯酸酯的基体树脂形成了牢固的交联网络,从而具有40.2 kgf cm的高粘合强度和64.8%的高伸长率。此外,所提出的粘合剂显示出1.2 mm的出色窄幅拉伸宽度,这是超窄边框显示器的一个先决条件。关于液晶污染,发现通过高温固化工艺,污染水平可显著降低至61 µm。本研究对先进显示器的发展做出了重大贡献,因为它提供了基于纳米材料的坚固且可持续的显示器粘合剂,从而延长了显示器的寿命并提高了其持续可操作性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f09d/7475906/cb10d8cb8bc2/materials-13-03492-g001.jpg

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