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首页> 外文期刊>Journal of Micromechanics and Microengineering >Hydrogen silsesquioxane mold coatings for improved replication of nanopatterns by injection molding
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Hydrogen silsesquioxane mold coatings for improved replication of nanopatterns by injection molding

机译:氢倍半硅氧烷模具涂料,用于通过注塑成型改善纳米图案的复制

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摘要

We demonstrate the replication of nanosized pillars in polymer (cyclic olefin copolymer) by injection molding using nanostructured thermally cured hydrogen silsesquioxane (HSQ) ceramic coatings on stainless steel mold inserts with mold nanostructures produced by a simple embossing process. At isothermal mold conditions, the average pillar height increases by up to 100% and a more uniform height distribution is observed compared to a traditional metal mold insert. Thermal heat transfer simulations predict that the HSQ film retards the cooling of the polymer melt during the initial stages of replication, thus allowing more time to fill the nanoscale cavities compared to standard metal molds. A monolayer of a fluorinated silane (heptadecafluorotrichlorosilane) deposited on the mold surface reduces the mold/polymer interfacial energy to support demolding of the polymer replica. The mechanical stability of thermally cured HSQ makes it a promising material for nanopattern replication on an industrial scale without the need for slow and energy intensive variotherm processes.
机译:我们展示了通过使用纳米结构热固化氢倍半硅氧烷(HSQ)陶瓷涂层通过简单的压花工艺生产的模具纳米结构的不锈钢模具嵌件上的注塑成型,可以在聚合物(环烯烃共聚物)中复制纳米尺寸的支柱。在等温模具条件下,与传统的金属模具插件相比,平均立柱高度最多可增加100%,并且观察到更均匀的高度分布。热传热模拟预测,HSQ薄膜在复制的初始阶段会延迟聚合物熔体的冷却,因此与标准金属模具相比,它有更多时间填充纳米级腔体。沉积在模具表面上的单层氟化硅烷(七氟三氯硅烷)降低了模具/聚合物的界面能,以支持聚合物仿品的脱模。热固化HSQ的机械稳定性使其成为工业规模上用于纳米图案复制的有前途的材料,而无需进行缓慢且耗能的变温工艺。

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