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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Control of Phase Separation Behavior of PC/PMMA Blends and Their Application to the Gas Separation Membranes
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Control of Phase Separation Behavior of PC/PMMA Blends and Their Application to the Gas Separation Membranes

机译:PC / PMMA共混物相分离行为的控制及其在气体分离膜中的应用

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Gas transport and thermodynamic properties for the blends of polycarbonate (PC) and polymethylmethacrylate(PMMA) were studied. To explore glass transition temperatures of blends and their phase separation temperatures due to a lower critical solution temperature, LCST, a type of phase boundary, transparent blend films that are miscible and do not contain solvent-induced PC crystals were prepared by controlling molecular weights of each component. The average value of interaction energy densities between PC and PMMA obtained from the phase boundaries and the equation of a state theory based on the lattice fluid model was 0.04 cal/cm~3. This result confirmed that miscibility of PC and PMMA blends at equilibrium depends upon the molecular weights of components. Gas transport properties of miscible blends and immiscible blends having the same chemical components and composition but a difference in morphology were examined at 35degC and 1 atm for the gases N_2 and O_2. Permeability and apparent diffusion coefficients were ranked in the order of the immiscible blend having a domain-matrix structure> the immiscible blend having an interconnected structure> the miscible blend. These results might be related to the differences in the local chain motions that depend on the intermolecular mixing level.
机译:研究了聚碳酸酯(PC)和聚甲基丙烯酸甲酯(PMMA)的共混物的气体传输和热力学性质。为了探索由于较低的临界溶液温度而导致的共混物的玻璃化转变温度及其相分离温度,通过控制分子筛的分子量,制备了LCST(一种相边界类型)可混溶且不含溶剂诱导的PC晶体的透明共混物膜。每个组件。从相界和基于晶格流体模型的状态理论方程获得的PC与PMMA之间相互作用能密度的平均值为0.04 cal / cm〜3。该结果证实了PC和PMMA共混物在平衡时的溶混性取决于组分的分子量。在35℃和1个大气压下,对N_2和O_2气体检查了具有相同化学成分和组成但形态上有差异的混溶共混物和不混溶共混物的气体传输性质。渗透性和表观扩散系数按具有域-矩阵结构的不溶混的混合物>具有互连结构的不溶混的混合物>溶混的混合物的顺序排列。这些结果可能与取决于分子间混合水平的局部链运动的差异有关。

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