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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Synergic Swelling of Interactive Network Support and Block Copolymer Films during Solvent Vapor Annealing
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Synergic Swelling of Interactive Network Support and Block Copolymer Films during Solvent Vapor Annealing

机译:溶剂蒸汽退火期间交互式网络支持的协同膨胀和嵌段共聚膜

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We report the effect of "interactive" polymer network (PN) supports on the solvent-vapor processing of thin polymer films. Densely cross-linked surface-attached network exhibits under experimental time scale a glassy swelling behavior with the conformational states and solvent uptake clearly sensitive to the degree of solvent vapor saturation in the atmosphere. Pretreatment of the thermally cured PN films by complete immersion or by swelling in saturated chloroform vapors facilitates relaxation of the residual stresses and induces irreversible changes to the network structure as revealed by the swelling/deswelling tests. The presence of a polymer film on top of the PN support results in a mutual influence of the layers on the respective swelling kinetics, steady-state solvent uptake, and chain dynamics. Using UV-vis ellipsometry, we revealed a significantly faster swelling and higher solvent uptake of glassy PN layer below a polymer film as compared to a single PN layer on silicon substrate. Remarkably, the swelling of the network support continues to increase even when the overall swelling of the bilayer is in a steady-state regime. Block copolymer films on PN supports exhibit a faster ordering dynamics and exceptional stability toward dewetting as compared to similar films on silicon wafers. The mechanical stress produced by continuously swelling PN is suggested to account for the enhanced segmental dynamics even at low solvent concentration in the block copolymer film. Apart from novel insights into dynamics of solvent uptake by heterogeneous polymer films, these results might be useful in developing novel approaches toward fast-processing/annealing of functional polymer films and fibers.
机译:我们报告了“交互式”聚合物网络(PN)对薄聚合物膜的溶剂蒸汽加工的影响。在实验时间下尺寸细胞交联的表面连接网络表现尺寸缩放了玻璃状膨胀行为,与大气中的溶剂蒸汽饱和程度明显敏感的玻璃状膨胀行为。通过完全浸没或通过在饱和氯仿蒸气中膨胀的预处理促进了残余应力的松弛,并诱导膨胀/抛光测试所揭示的网络结构的不可逆变化。 PN载体顶部的聚合物膜的存在导致层对各个肿胀动力学,稳态溶剂吸收和链动力学的相互影响。与硅衬底上的单个PN层相比,使用UV-VIS椭圆形测定法显示出明显更快的溶胀和更高的聚合物膜下方的玻璃Pn层的溶胀和更高的溶剂吸收。值得注意的是,即使双层的整体肿胀处于稳态状态,网络支持的肿胀也继续增加。与硅晶片上的类似薄膜相比,PN支撑件上的嵌段共聚物膜表现出更快的订购动力学和朝向脱模的卓越稳定性。建议通过连续膨胀PN产生的机械应力,以考虑嵌段共聚物膜中的低溶剂浓度的增强的节段动力学。除了新的洞察力对异质聚合物膜的溶剂吸收动力学之外,这些结果可能用于开发新的功能聚合物膜和纤维的快速加工/退火的新方法。

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