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Graft Polymerization of Acrylic Acid onto Polypropylene Monofilament by RF Plasma

机译:射频等离子体将丙烯酸接枝聚合到聚丙烯单丝上

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Plasma-induced graft polymerization of acrylic acid onto polypropylene monofilament was carried out to introduce carboxyl groups on its surface. The monofilament was treated with oxygen plasma to create hydroperoxide groups and subsequent graft polymerization of acrylic acid on exposed filament was carried out. An increase in the plasma power led to higher graft levels. It was observed that the hydroperoxide build up on PP surface follows linear increase with the increase in the plasma treatment time only up to 180 s beyond which it slowed down significantly. The formation of oxygenated species was ascertained by X-ray photoelectron spectroscopy, and the peroxide content was measured by the 2'-diphenylpicrylhydrazyl (DPPH) estimation. The grafting was observed to be considerably influenced by the plasma exposure time, plasma power, reaction temperature, mono-mer concentration and the storage temperature. A maximum in the degree of grafting was observed at 40% monomer concentration beyond which grafting tended to decrease very fast. The grafting was also found to be maximum at 50 degrees C followed by a sharp decrease, subsequently. The storage of the exposed filament at -80 degrees C led to the identical grafting all along the 16 days. However, the storage at 25 degrees C showed significant reduction in the degree of grafting. The atomic force microscopy showed that surface morphology is transformed into a nonhomogeneous one after the plasma exposure, but tends to flatten out after the grafting process in the form of globular structures.
机译:进行等离子体诱导的丙烯酸在聚丙烯单丝上的接枝聚合,以在其表面引入羧基。用氧等离子体处理单丝以产生氢过氧化物基团,随后在裸露的长丝上进行丙烯酸的接枝聚合。血浆能量的增加导致更高的移植水平。观察到,随着等离子体处理时间的增加,在PP表面积累的氢过氧化物仅随线性增加而增加,直到长达180 s为止,在此时间内它显着减慢。通过X射线光电子能谱确定了氧合物种的形成,并且通过2'-二苯基吡啶甲基肼基(DPPH)估计来测量过氧化物含量。观察到接枝受到等离子体暴露时间,等离子体功率,反应温度,单体浓度和储存温度的显着影响。在单体浓度为40%时观察到最大的接枝度,超过此浓度接枝往往会很快下降。还发现接枝在50℃下最大,随后急剧下降。暴露的长丝在-80摄氏度下的储存导致整个16天都进行了相同的接枝。然而,在25℃下的储存显示出接枝度的显着降低。原子力显微镜显示,等离子暴露后,表面形态转变为不均匀的形态,但在接枝过程后趋于以球形结构的形式变平。

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