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Effect of blend composition on microstructure, morphology, and gas permeability in PU/PMMA blends

机译:共混物组成对PU / PMMA共混物的微观结构,形态和透气性的影响

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PU and PU/PMMA blends were studied by Fourier transform infrared spectroscopy (FTIR), temperature modulated differential scanning calorimetry (TMDSC), scanning electron microscopy (SEM) and positron annhililation lifetime spectroscopy (PALS), and applied as membranes to the permeation of the gases H_2, N_2, O_2, CH_4, and CO_2. The blend materials presented partial miscibility associated with hydrogen bond interaction between urethane and PMMA. Polyether flexible segment glass transition was observed at -51℃ and no significantly changes with PMMA content were observed in PU continuous phase in the blends. On the other hand, a PMMA rich phase presented glass transitions between 74 and 90℃ for blends with 80, 60, 40, and 20 wt% PU. Pure PMMA shows T_g of 117℃. Besides, it was observed a broad thermal event that can be assigned to the interphase between the pure PU phase and the PMMA rich phase. PALS results showed a decrease in the average free volume size of the blends with increasing PMMA content for blends with 80 and 60 wt% PU. In addition, the relative free volume content of the samples does not change significantly. The blends with 90, 80, 70, and 60 wt% PU showed lower permeabilities than those of the PU membrane. The decrease in permeability is well correlated with the decrease in average free volume size. In the case of the H_2/N_2 gas pair, selectivity increases with blend PMMA content, and no marked changes are observed for the other gas pairs. The improvement in H_2 selectivity is associated with the increase in rigid amorphous phases, which induces a complex phase-separated morphology in the blends.
机译:通过傅里叶变换红外光谱(FTIR),温度调制差示扫描量热法(TMDSC),扫描电子显微镜(SEM)和正电子n化寿命谱(PALS)研究了PU和PU / PMMA的共混物,并将其作为膜用于渗透气体H_2,N_2,O_2,CH_4和CO_2。共混材料呈现出与聚氨酯和PMMA之间的氢键相互作用相关的部分混溶性。在-51℃下观察到聚醚柔性链段玻璃化转变,并且在共混物中PU连续相中未观察到随PMMA含量的明显变化。另一方面,与80、60、40和20 wt%的PU混合时,富含PMMA的相在74至90℃之间表现出玻璃化转变。纯PMMA的T_g为117℃。此外,观察到广泛的热事件,可以将其归因于纯PU相和富含PMMA的相之间的相。 PALS结果显示,对于具有80和60wt%PU的共混物,随着PMMA含量的增加,共混物的平均自由体积尺寸减小。另外,样品的相对自由体积含量没有明显变化。具有90、80、70和60 wt%PU的共混物显示出比PU膜更低的渗透率。渗透率的降低与平均自由体积尺寸的降低密切相关。在H_2 / N_2气体对的情况下,选择性随混合PMMA含量的增加而增加,其他气体对则没有观察到明显的变化。 H_2选择性的提高与刚性非晶相的增加有关,这会导致共混物中复杂的相分离形态。

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