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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Semicrystalline polyphosphazenes: A comparative study of topology, morphology, and contact angles for three fluorous and one aryl polyphosphazene
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Semicrystalline polyphosphazenes: A comparative study of topology, morphology, and contact angles for three fluorous and one aryl polyphosphazene

机译:半结晶聚磷腈:三种氟和一个芳基聚磷腈的拓扑,形态和接触角的比较研究

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摘要

This report describes the surface morphology and wetting behavior of one aryl and three fluorous polyphosphazenes: poly[bis(2,2,2-trifluoroethoxy) phosphazene], PTFEP, 1, poly[bis(para-fluorophenoxy)phosphazene] 2, poly[bis(meta-trifluoromethylphenoxy)phosphazene] 3, and poly(diphenoxyphosphazene) 4. Thermal analysis confirms high thermal stability for these polyphosphazenes. With phenyl side chains, 2-4 are particularly stable with T_(5%) >400 °C. Surface morphology via tapping mode atomic force microscopy (TM-AFM) and dynamic contact angles (DMA) are correlated with composition and crystallinity estimated by differential scanning calorimetry (DSC). The resulting structure property relationships define trends in processability, hydrophobicity and oleophobicity. Compared to 1, 3, and 4 poly[bis(para-fluorophenoxy)phosphazene] 2 is noteworthy by virtue of a high melting point (179 °C), high crystallinity (ΔH_f, 30.2 J/g), and a moderate molecular weight. The remaining polyphosphazenes in this group have T_m <100 °C. Heats of fusion (J/g) are in the order 1 (29.4) ≈ 2 (30.2) > 3 (17) 4 (4.0). High molecular weights for 3 and 4 (>10~3 kDa) would make melt processability problematic. Thus 1 or 2 has a favorable combination of properties, with 2 favored for many applications due to a higher T_m. In summary, for performance and processing, high T_m, and resistance to water and hydrocarbons poly[bis(para-fluorophenoxy)phosphazene], 2 is attractive. This finding suggests other para-substituted phenyl phosphazenes are worth further study.
机译:该报告描述了一种芳基和三种氟聚磷腈的表面形态和润湿行为:聚[双(2,2,2-三氟乙氧基)磷腈],PTFEP,1,聚[双(对氟苯氧基)磷腈] 2,聚[双(间三氟甲基苯氧基磷腈)3和聚(二苯氧基磷腈)4。热分析证实了这些聚磷腈的高热稳定性。对于苯基侧链,当T_(5%)> 400°C时,2-4是特别稳定的。通过攻丝模式原子力显微镜(TM-AFM)和动态接触角(DMA)的表面形态与通过差示扫描量热法(DSC)估算的组成和结晶度相关。最终的结构特性关系定义了可加工性,疏水性和疏油性的趋势。与1、3和4相比,聚[双(对氟苯氧基)磷腈] 2具有高熔点(179°C),高结晶度(ΔH_f,30.2 J / g)和中等分子量等特点。该组中其余的聚磷腈的T_m <100°C。熔化热(J / g)的顺序为1(29.4)≈2(30.2)> 3(17) 4(4.0)。 3和4的高分子量(> 10〜3 kDa)将使熔融加工性成为问题。因此,1或2具有良好的特性组合,由于T_m较高,因此2在许多应用中均受青睐。总之,对于性能和加工而言,高的T_m以及对水和烃的抗性是聚[双(对(对-氟苯氧基)磷腈] 2)。该发现表明其他对位取代的苯基磷腈值得进一步研究。

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