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Condensation Induced Blistering as a Measurement Technique for the Adhesion Energy of Nanoscale Polymer Films

机译:缩合诱导将起泡作为纳米级聚合物膜的粘合能量的测量技术

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Polymeric coatings having micro-to-nanoscale thickness show immense promise for enhancing thermal transport, catalysis, energy conversion, and water collection. Characterizing the work of adhesion (G) between these coatings and their substrates is key to understanding transport physics as well as mechanical reliability. Here, we demonstrate that water vapor condensation blistering is capable of in situ measurement of work of adhesion at the interface of polymer thin films with micrometer spatial resolution. We use our method to characterize adhesion of interfaces with controlled chemistry such as fluorocarbon/fluorocarbon (CFn/CFm n, m = 0-3), fluorocarbon/hydrocarbon (CFn/CFm), fluorocarbon/silica (CFn/SiO2), and hydrocarbon/silica (CHn/SiO2) interfaces showing excellent agreement with adhesion energy measured by the contact angle approach. We demonstrate the capability of our condensation blister test to achieve measurement spatial resolutions as low as 10 mu m with uncertainties of similar to 10%. The outcomes of this work establish a simple tool to study interfacial adhesion.
机译:具有微氮纳米级厚度的聚合物涂层表明,用于增强热传输,催化,能量转换和水收集的巨大承诺。表征这些涂层和它们的基板之间的粘附(g)的工作是了解运输物理学以及机械可靠性的关键。在这里,我们证明水蒸气冷凝弹起能够原位测量具有微米空间分辨率的聚合物薄膜界面处的粘合性的工作。我们使用我们的方法来表征具有受控化学界面的界面的粘附,例如氟碳/氟碳(CFN / CFM N,M = 0-3),碳氟化合物/烃(CFN / CFM),碳氟化合物/二氧化硅(CFN / SiO 2)和烃类/二氧化硅(CHN / SIO2)接口显示通过接触角法测量的粘合能量的优异协议。我们展示了我们的冷凝泡罩试验的能力,以实现低至10μm的测量空间分辨率,不确定性与10%相似。这项工作的结果建立了一种学习界面粘附的简单工具。

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