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Morphology, thermal stability and rheology of poly(propylene carbonate)/ organoclay nanocomposites with different pillaring agents

机译:具有不同支柱剂的聚碳酸亚丙酯/有机粘土纳米复合材料的形貌,热稳定性和流变学

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摘要

Unpillared montmorillonite PGV and five organoclays (Nanocor's Nanomer I.44P, I.24TL and I.34TCN and Southern Clay Product's C25A and C30B) were high shear melt-blended (2.5 wt%) into poly(propylene carbonate) (PPC). Solubility parameters of the clay pillaring agents versus that of PPC were used to predict clay/PPC miscibilities and these were compared to XRD and TEM nanoclay dispersion measurements. Clays I.34TCN and C30B, with the highest predicted pillaring agent/PPC miscibilites, had partially exfoliated morphologies. Clays I.24TL, C25A and I.44P, with pillaring agents predicted to be less PPC miscible, were less highly nanodispersed. Quaternary ammonium pillars with two 2-hydroxyethyl groups promoted the best nanodispersion in PPC. 12-Aminododecanoic acid (in I.24TL) promoted the intercalation. Dimethyl dialkyl quaternary ammoniums (in I.44P and C25A) were less effective. Organoclay dispersion improved the thermal stability. The PPC/I.24TL nanocomposite, with the most stable 12-aminododecanoic acid pillar, was the most thermally stable (PPC/I.34TCN and PPC/C30B were the second and third). The nanocomposites exhibited narrower linear viscoelastic zones than PPC and solidlike behaviors in these linear zones.
机译:将未起泡的蒙脱土PGV和五种有机粘土(Nanocor的Nanomer I.44P,I.24TL和I.34TCN以及Southern Clay Product的C25A和C30B)进行高剪切熔融共混(2.5 wt%),制成聚碳酸亚丙酯(PPC)。粘土支柱剂相对于PPC的溶解度参数用于预测粘土/ PPC的混溶性,并将其与XRD和TEM纳米粘土分散体测量值进行比较。 I.34TCN和C30B粘土具有最高的预测柱撑剂/ PPC可混溶性,其形态部分剥落。粘土I.24TL,C25A和I.44P的柱撑剂预计与PPC的混溶性较小,纳米分散性较低。具有两个2-羟乙基的季铵柱促进了PPC的最佳纳米分散。 12-氨基癸酸(在I.24TL中)促进了插层。二甲基二烷基季铵盐(在I.44P和C25A中)效果较差。有机粘土分散改善了热稳定性。具有最稳定的12-氨基十二烷酸支柱的PPC / I.24TL纳米复合材料具有最高的热稳定性(PPC / I.34TCN和PPC / C30B是第二和第三位)。纳米复合材料比PPC表现出更窄的线性粘弹性区,并在这些线性区中表现出类似固体的行为。

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