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UV-curable top coat protection against mechanical abrasion for atomic layer deposition (ALD) thin film barrier coatings

机译:可紫外线固化的面漆可防止原子层沉积(ALD)薄膜阻隔涂层的机械磨损

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摘要

It has been demonstrated that atomic layer deposition (ALD) is able to produce high quality, single layer, moisture barrier films on polymer substrates. ALD coatings are extremely conformal, which is ideally suited for creating excellent barriers even on highly imperfect surfaces. ALD by substrate translation enables the production of ultra-barrier films at industrial scales by increasing throughput and lowering cost compared to traditional ALD processing techniques. However, because ALD barrier coatings are thin and deposited on relatively soft polymer substrates, they are particularly susceptible tomechanical abrasion during downstreamoperations, including rewinding. This study demonstrates that an ultra-violet (UV)-curable, acrylic top coat can be used to preserve the ALD thin film's barrier properties against typical downstream mechanical abrasion. Specifically, 1 μm top coat thickness protected 8 nmALD barrier film against typical mechanical abrasion tomaintain water vapor transmission rate below an analyzer sensitivity limit, 3 × 10~(?3) g/(m~2·d). In addition, several commercially-viable options exist for scaling-up and integrating overcoat application into roll-to-roll systems.
机译:已证明原子层沉积(ALD)能够在聚合物基材上生产高质量的单层防潮膜。 ALD涂层非常保形,即使在高度不完美的表面上,也非常适合创建出色的阻隔层。与传统的ALD处理技术相比,通过衬底平移进行的ALD通过提高产量和降低成本,能够以工业规模生产超阻隔膜。但是,由于ALD阻隔涂层很薄并且沉积在相对较软的聚合物基材上,因此在下游操作(包括复卷)期间,它们特别容易受到机械磨损。这项研究表明,可使用紫外线(UV)固化的丙烯酸面漆来保持ALD薄膜的阻隔性能,以防典型的下游机械磨损。具体而言,1μm的面漆厚度可保护8 nmALD阻挡膜免受典型的机械磨损,以保持水蒸气透过率低于分析仪灵敏度极限3×10〜(?3)g /(m〜2·d)。此外,还存在一些商业可行的选择,用于扩大规模并将外涂层应用集成到卷对卷系统中。

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