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Depth profiles of polymer mobility during the film formation of a latex dispersion undergoing photoinitiated cross-linking

机译:乳胶分散液成膜过程中发生光引发交联的聚合物迁移率深度分布

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The first use of one-dimensional magnetic resonance imaging (MRI) to provide information on concentration and molecular mobility las revealed by the spin-spin relaxation time, Ttl as a function of depth into cross-linking latex coatings during their film formation is reported. These materials are of interest because they provide hard, chemically resistant coatings and because, being waterborne, they do not release organic solvents into the atmosphere. MRI profiles, with a pixel resolution of 9 mum, are obtained at regular time intervals from a poly(vinyl acetate-co-ethylene) latex dispersion containing a difunctional cross-linker and a photoinitiator. In this complete formulation, MRI reveals that the rate of cross-linking is fastest in the middle regions of the coating. This result is explained by considering the combined effects of light scattering in the turbid latex, the inhibition of the free-radical cross-linking reaction by initial molecular oxygen, and the further ingress of oxygen from the atmosphere. A numerical model, using measured and known parameters, predicts MRI profiles that are in good qualitative agreement with those found experimentally. [References: 35]
机译:据报道,一维磁共振成像(MRI)首次用于提供有关浓度和分子迁移率信息的信息,该信息由自旋-自旋弛豫时间Ttl随成膜过程中交联乳胶涂层的深度而变化。这些材料之所以令人关注,是因为它们提供了坚硬的,耐化学腐蚀的涂层,并且由于它们是水性的,它们不会将有机溶剂释放到大气中。以规则的时间间隔从包含双官能交联剂和光引发剂的聚(乙酸乙烯酯-共-乙烯)乳胶分散液中获得像素分辨率为9um的MRI分布图。在这种完整的配方中,MRI显示出交联速率在涂层的中间区域最快。通过考虑混浊乳胶中光散射,初始分子氧对自由基交联反应的抑制以及氧从大气中进一步进入的综合作用来解释该结果。使用测得的已知参数的数值模型可以预测MRI轮廓,这些轮廓与实验发现的轮廓吻合良好。 [参考:35]

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