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Adhesion promotion of thick polyphosphate-poly(allylamine) films onto polyolefin substrates by plasma polymers

机译:等离子体聚合物促进厚聚磷酸盐-聚(烯丙胺)膜在聚烯烃基材上的粘合

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摘要

The adhesion of thick poly(allylamine)-polyphosphate layers (1m) deposited by the wet-chemical layer-by-layer (LbL) technique onto polyethylene or polystyrene (each 100m) was very low. To promote the adhesion of these LbL deposited layers, the polyolefin substrates were oxidized at the surface by short exposure to the oxygen plasma (2 or 5 s) and subsequently coated with an interlayer of plasma-deposited poly(allylamine) or poly(allyl alcohol) (100nm). The plasma polymer interlayers have improved strongly the adhesion between polyolefin substrates and polyphosphate coatings. Such phosphate coatings are interesting for life sciences (nucleotide formation) but also for fire retardancy in combination with N-rich compounds such as melamine. The intention was to prefer chemical hydrogen bonds for adhesion promoting because of their high binding energy. Therefore the introduced oxygen-containing groups at the polyolefin surface could interact with the OH or NH2 groups of the adhesion-promoting plasma polymer interlayer. These groups were also able to interact strongly with the poly(allylamine)-polyphosphate topcoating. The coated polyolefins were investigated using Fourier transform infrared spectroscopy in attenuated total reflectance mode (FTIR-ATR), X-ray photoelectron spectroscopy, thermogravimetric analyses and atomic force spectroscopy, and 90 degrees peel test.
机译:通过湿化学逐层(LbL)技术沉积的厚聚(烯丙胺)-聚磷酸盐厚层(1m)在聚乙烯或聚苯乙烯(每个100m)上的附着力非常低。为了促进这些LbL沉积层的附着力,通过短时间暴露于氧等离子体(2或5 s)在表面上将聚烯烃基质氧化,然后用等离子沉积的聚烯丙胺或聚烯丙醇的中间层进行涂覆)(100nm)。等离子体聚合物中间层极大地改善了聚烯烃基材和聚磷酸盐涂层之间的粘合性。这种磷酸盐涂层不仅对生命科学(形成核苷酸)有兴趣,而且与含氮化合物(如三聚氰胺)的组合也具有阻燃性。由于它们的高结合能,其意图是优选化学氢键来促进粘合。因此,在聚烯烃表面上引入的含氧基团可以与增粘等离子体聚合物中间层的OH或NH 2基团相互作用。这些基团还能够与聚(烯丙胺)-聚磷酸盐面涂层强烈地相互作用。使用傅里叶变换红外光谱在衰减全反射率模式(FTIR-ATR),X射线光电子能谱,热重分析和原子力能谱以及90度剥离试验下研究了涂层的聚烯烃。

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