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首页> 外文期刊>Journal of Colloid and Interface Science >Dynamics of polymeric solid surfaces treated by oxygen plasma: Plasma-induced increases in surface molecular mobility of polystyrene
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Dynamics of polymeric solid surfaces treated by oxygen plasma: Plasma-induced increases in surface molecular mobility of polystyrene

机译:氧等离子体处理的聚合物固体表面的动力学:等离子体引起的聚苯乙烯表面分子迁移率增加

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The dynamic behavior of the oxygen-containing polar functional groups on the plasma-treated polymer surfaces has been studied in relation to the polymer-chain mobility with regard to the effect of the aging temperature and the crosslinking density of the polymer. The films of polystyrene (PS) were treated by Oz plasma, and aged in dry nitrogen gas or distilled water at 25 and 75 degrees C for 480 h, Second, the styrene-divinylbenzene (St-DVB) copolymers with different crosslinking densities were synthesized and aged in dry nitrogen for 480 h after the O-2-plasma treatment. The low molecular-weight oxidation products formed by the plasma treatment were removed by washing the films with methanol, which made it possible to eliminate the effects of the products. The wettability of PS film acquired by the O-2-plasma treatment became poorer during the aging in nitrogen. Especially the aging at 75 degrees C in nitrogen led the contact angle of water close to that of the untreated PS, which suggested that the surface molecules of the treated PS were beyond the glass transition point even at the temperature. On the other hand, the restriction of the hydrophobic recovery by crosslinking was, contrary to the expectations, rather mild: The St-DVB copolymer with as much as 20 mol% DVB still increased the contact angles of water by 30 degrees from the value immediately after the plasma treatment. These results suggested that the molecular mobility on the surface of polystyrene was increased by the O-2-plasma treatment compared with that of the untreated state, which enhanced the migration of the polar functional groups introduced into the PS. (C) 1998 Academic Press. [References: 21]
机译:关于老化温度和聚合物的交联密度的影响,已经研究了在等离子体处理的聚合物表面上含氧极性官能团在聚合物链迁移率方面的动力学行为。用Oz等离子体处理聚苯乙烯(PS)膜,并在干燥的氮气或蒸馏水中在25和75摄氏度下老化480小时,其次,合成具有不同交联密度的苯乙烯-二乙烯基苯(St-DVB)共聚物在O-2-等离子体处理后,在干燥氮气中老化480小时。通过用甲醇洗涤膜来去除通过等离子体处理形成的低分子量氧化产物,这可以消除产物的影响。在氮气中老化期间,通过O-2-等离子体处理获得的PS膜的润湿性变差。特别是在氮气中在75摄氏度下的老化导致水的接触角接近未处理的PS,这表明即使在该温度下,处理后的PS的表面分子也超过了玻璃化转变点。另一方面,与交联相反,通过交联进行疏水性回收的限制相当温和:DVB高达20 mol%的St-DVB共聚物仍将水的接触角从立即的值增加了30度。等离子处理后。这些结果表明,与未处理状态相比,通过O-2-等离子体处理提高了聚苯乙烯表面上的分子迁移率,这增强了引入PS中的极性官能团的迁移。 (C)1998年学术出版社。 [参考:21]

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