Ma Junfei, Kim Ji-Hyeon, Na Jaehun, Min Junki, Lee Ga-Hyun, Jo Sungjin, Kim Chang Su
Department of Nano-Bio Convergence, Korea Institute of Materials Science (KIMS), Changwon 51508, South Korea.
School of Architectural, Civil, Environmental, and Energy Engineering, Kyungpook National University, Daegu 41566, South Korea.
ACS Omega. 2021 May 11;6(20):13384-13390. doi: 10.1021/acsomega.1c01429. eCollection 2021 May 25.
Electron beam (EB) curing is a foldable hard coating process and has attracted significant research attention in the field of flexible electronic devices. In this study, we report a method for enhancing material surface hardness with low-energy EB curing in a short time. The low-energy EB improved the coating hardness of films by inducing cross-linking polymerization of the silicon-containing monomer. The hardness of the cured coating layer was measured as 3 H using a pencil hardness tester, and the transparency of the coating was higher than 90%. Owing to a series of cross-linking reactions between Si-O-C and Si-OH groups under EB curing and the formation of Si-Si bonds, the cured layer exhibited remarkable durability in the 100000-flexible cycle test. Additionally, the natural oxidation of the C-O groups on the surface of the coating formed carboxyl groups that improved the hydrophilic properties of the coating layer. To the best of our knowledge, this is the first study to propose that the hardness of polyethylene terephthalate films can be improved using low-energy EBs to rapidly cure silicon-containing coatings. Our results provide a novel and commercially viable approach for improving the hardness of touch screens and foldable displays.
电子束(EB)固化是一种可折叠的硬涂层工艺,在柔性电子器件领域引起了广泛的研究关注。在本研究中,我们报道了一种通过低能量电子束在短时间内固化来提高材料表面硬度的方法。低能量电子束通过诱导含硅单体的交联聚合提高了薄膜的涂层硬度。使用铅笔硬度测试仪测得固化涂层的硬度为3H,涂层的透明度高于90%。由于在电子束固化下Si-O-C和Si-OH基团之间发生了一系列交联反应并形成了Si-Si键,固化层在100000次柔性循环测试中表现出显著的耐久性。此外,涂层表面C-O基团的自然氧化形成了羧基,改善了涂层的亲水性。据我们所知,这是第一项提出使用低能量电子束快速固化含硅涂层来提高聚对苯二甲酸乙二酯薄膜硬度的研究。我们的结果为提高触摸屏和可折叠显示器的硬度提供了一种新颖且具有商业可行性的方法。