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Soluble aromatic polyamides containing pendant pentadecyl substituted methoxy phenyl unit

机译:含有侧戊烷基取代的甲氧基苯基单元的可溶性芳族聚酰胺

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摘要

A new aromatic diamine 4-(3,5-diamino benzoyl amido)-3-pentadecyl anisole; (V) containing pendant pentadecyl substituted methoxyphenyl moiety was synthesized and characterized by FT-IR, NMR (H-1 and C-13) and mass spectrometry. New aromatic polyamides were prepared from the diamine (V) and two aromatic diacid chlorides, Isophthaloyl chloride (IPC), Terphthaloyl chloride (TPC) using low temperature solution polycondensation method. Inherent viscosities of the polyamides were in the range 0.30 to 0.52 dL/g inN,N,Dimethylacetamide(DMAc) indicating moderate to high molecular weight of polyamides. The resulting polyamides were soluble in N-Methyl Pyrrolidone(NMP), N, N, Dimethyl formamide (DMF), N, N, Dimethyl acetamide (DMAc), N, N, Dimethyl sulphoxide(DMSO) and m-cresol. These polyamides showed relatively lower glass transition temperatures which were in the range 196-249 degrees C; Probably due to pendant alkyl substituted anisole structure which could impart internal plasticization effect. Thermal stability with T-10 weight loss temperature in the range of 359-387 degrees C under nitrogen atmosphere illustrated good thermal stability. XRD of all polyamides showed that polyamides are amorphous in morphology; which is well reflected in good solubility of these polyamides in polar aprotic solvents named above. Thus incorporation of pendant methoxyphenylunit with pentadecyl substituent brought improvement in their solubility and processable properties by lowering T(g)values; without any significant deterioration of their thermal stability.
机译:一种新的芳族二胺4-(3,5-二氨基苯甲酰基Amido)-3-戊烷基苯甲醚; (v)含有侧致戊基取代的甲氧基苯基部分,其特征在于FT-IR,NMR(H-1和C-13)和质谱法。使用低温溶液缩聚法由二胺(V)和两种芳族二酸氯化物,双酞氯(TPC)制备新的芳族聚酰胺。聚酰胺的固有粘度为0.30至0.52dL / g型材,N,二甲基乙酰胺(DMAC),表明中等至多的聚酰胺。所得聚酰胺溶于N-甲基吡咯烷酮(NMP),N,N,二甲基甲酰胺(DMF),N,N,二甲基乙酰胺(DMAC),N,N,二甲基亚砜(DMSO)和M-甲酚。这些聚酰胺显示出相对较低的玻璃化转变温度,其在196-249摄氏度范围内;可能是由于悬浮烷基取代的抗粘溶结构,其可以赋予内部增塑效果。在氮气氛下,具有T-10重量损失温度的热稳定性在359-387℃的范围内显示出良好的热稳定性。所有聚酰胺的XRD表明,聚酰胺是形态学的无定形体;其在上述极性非质子溶剂中这些聚酰胺的良好溶解度良好。因此,通过降低T(g)值,通过戊二基取代基掺入戊烯基取代基的溶解度和加工性能;没有任何显着恶化的热稳定性。

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