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Perfluoropolyalkylether Maleimides for Protection From Oxygen Inhibition and Surface Modification of Photoinitiator-Free UV-Cured Polymers

机译:全氟化萘烷基醚马来酰亚胺,用于保护光引发剂的UV固化聚合物的氧抑制和表面改性

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摘要

Maleimides are attractive systems for photopolymerize for two major reasons: (1) they follow a radical mechanism without requiring a photoinitiator and (2) their rate of polymerization corresponds similarly to acrylates, which are commonplace in the industry. In this work, bismaleimide polypropylene oxide was cured under UV light forming thin films. Their surface properties were modified by copolymerization them with fluorinated comonomers. To this goal, perfluoropolyalkylethers (PFPAEs) with maleimide groups were synthesized, varying their chain structure, their functionality degree and consequently their intrinsic viscosity. These PFPPAE comonomers were highlighted to segregate at the surface, assuring omniphobic properties and acting as a protective layer against oxygen inhibition. These phenomenon were observed even when added at a concentration ≤5% w/w with respect to the main polypropylene oxide monomer. XPS analyses confirmed the segregation of the fluorine atoms at the surface during the UV-curing process of the coatings.
机译:马来酰亚胺是用于光聚合的有吸引力的系统,有两种主要原因:(1)它们遵循自由基机制而不需要光引发剂,并且其聚合速率与丙烯酸酯类似,这在行业中常见。在这项工作中,在UV光形成薄膜下固化双聚酰胺聚环氧丙烷。通过将它们与氟化共聚单体共聚改性它们的表面性质。为此目的,合成,与马来酰亚胺基团的全氟烷基甲醚(PFPAES)合成,改变它们的链结构,其功能度,并因此改变其特性粘度。这些PFPPAE共聚单体被突出显示以在表面处隔离,确保唯一的性质,并用作防止氧抑制的保护层。即使在相对于主聚丙烯氧化物单体以浓度≤5%w / w以浓度≤5%w / w,也观察到这些现象。 XPS分析确认在涂层的UV固化过程中氟原子在表面的偏析。

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