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首页> 外文期刊>Journal of Applied Polymer Science >SURFACE FREE ENERGY ANALYSIS OF POLYSTRENE-POLY(BETA-HYDROXYNONANOATE) GRAFT COPOLYMERS
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SURFACE FREE ENERGY ANALYSIS OF POLYSTRENE-POLY(BETA-HYDROXYNONANOATE) GRAFT COPOLYMERS

机译:聚对苯二甲酸乙二醇酯接枝共聚物的表面自由能分析

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Polystyrene-poly(beta-hydroxynonanoate) (PS-PHN) graft copolymers having 12, 17, 27, 31, 37, 60, 89, and 94% PS contents were prepared using active PS synthesized from styrene and oligododecandioyl peroxide initiator. Then the copolymer films were cast from chloroform, toluene, cyclohexanone, and butyl acetate. PS and PHN homopolymer blends were also prepared as films having 8, 12, 28, 34, 44, and 64% PS in the same casting solvents. The contact angles of water, glycerol, ethylene glycol, formamide, trans-decaline, and paraffin oil drops were measured on these cast films. The contact angle results were evaluated in terms of surface free energy components using Van Oss-Good methodology. It was determined that the Lifshitz-van der Waals component (gamma(s)(LW)) of the graft copolymers and blend of homopolymers did not differ so much with the copolymer composition. However, the electron donor component of the surface free energy (gamma(s)(-)) decreased with the decrease of PHN content to a considerable extent. It was observed that this decrease is more linear than that of homopolymer blends. The effect of the nature of the casting solvents on the surface properties of the polymers was also investigated in terms of their solubility parameter values and it was found that the more H-bonding solvents resulted in higher (gamma(s)(-)) surfaces. (C) 1996 John Wiley & Sons, Inc. [References: 33]
机译:使用由苯乙烯和低聚十二烷二酰过氧化物引发剂合成的活性PS制备具有12%,17%,27%,31%,37%,60%,89%和94%PS含量的聚苯乙烯-聚(β-羟基壬酸酯)(PS-PHN)接枝共聚物。然后,将共聚物膜由氯仿,甲苯,环己酮和乙酸丁酯浇铸。 PS和PHN均聚物共混物也被制备成在相同的流延溶剂中具有8、12、28、34、44和64%PS的薄膜。在这些流延膜上测量水,甘油,乙二醇,甲酰胺,反癸酸和石蜡油滴的接触角。使用Van Oss-Good方法,根据表面自由能分量评估了接触角结果。可以确定的是,接枝共聚物和均聚物的共混物的Lifshitz-van der Waals组分(γ(LW))与共聚物组成没有太大差异。然而,随着PHN含量的降低,表面自由能的电子给体组分(γ(s)(-))显着降低。观察到,这种降低比均聚物共混物的降低更线性。还根据其溶解度参数值研究了浇铸溶剂的性质对聚合物表面性能的影响,并且发现,更多的氢键溶剂会导致较高的(gamma(s)(-))表面。 (C)1996 John Wiley&Sons,Inc. [参考:33]

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