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首页> 外文期刊>ACS applied materials & interfaces >Enhanced Interfacial Toughness of Thermoplastic–Epoxy Interfaces Using ALD Surface Treatments
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Enhanced Interfacial Toughness of Thermoplastic–Epoxy Interfaces Using ALD Surface Treatments

机译:使用ALD表面处理提高热塑性环氧界面的界面韧性

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Interfacial fracture and delamination of polymer interfaces can play a critical role in a wide range of applications, including fiber-reinforced composites, flexible electronics, and encapsulation layers for photovoltaics. However, owing to the low surface energy of many thermoplastics, adhesion to dissimilar material surfaces remains a critical challenge. In this work, we demonstrate that surface treatments using atomic layer deposition (ALD) on poly(methyl methacrylate) (PMMA) and fluorinated ethylene propylene (FEP) lead to significant increases in surface energy, without affecting the bulk mechanical response of the thermoplastic. After ALD film growth, the interfacial toughness of the PMMA–epoxy and FEP–epoxy interfaces increased by factors of up to 7 and 60, respectively. These results demonstrate the ability of ALD to engineer the adhesive properties of chemically inert surfaces. However, in the present case, the interfacial toughness was observed to decrease significantly with an increase in humidity. This was attributed to the phenomenon of stress-corrosion cracking associated with the reaction between Al_(2)O_(3) and water and might have a significant implication for the design of these tailored interfaces.
机译:聚合物界面的界面骨折和分层可以在广泛的应用中起着关键作用,包括光伏电子,柔性电子和封装层。然而,由于许多热塑性塑料的低表面能,对不同材料表面的粘附仍然是一个关键挑战。在这项工作中,我们证明了使用原子层沉积(ALD)在聚(甲基丙烯酸甲酯)(PMMA)和氟化乙烯丙烯(FEP)上的表面处理导致表面能的显着增加,而不会影响热塑性塑料的体积机械响应。在ALD薄膜生长后,PMMA-环氧树脂和FEP-环氧界面的界面韧性分别增加到7和60的因素。这些结果表明ALD工程师能够工程化学惰性表面的粘合性能。然而,在当前情况下,观察到界面韧性随着湿度的增加而显着降低。这归因于与Al_(2)O_(3)和水之间的反应相关的应力 - 腐蚀裂纹的现象,并且可能对设计这些量身定制的界面的设计有重大意义。

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