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Structural model for oxygen permeability of a liquid crystalline polymer

机译:液晶聚合物的透氧性的结构模型

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This study examined the solid-state structure and oxygen transport properties of smectic poly(diethylene glycol 4,4'-bibenzoate) (PDEGBB). The polymer was quenched from the isotropic melt to the smectic liquid crystalline glass and subsequently isothermally crystallized by heating above the glass transition temperature. Crystallized PDEGBB was characterized by thermal analysis and X-ray diffraction. Gas transport properties were characterized by oxygen permeability, diffusivity, and solubility at 1 atm. Oxygen solubility decreased linearly with crystallinity as determined by the heat of melting. This result supported a simple two-phase model of impermeable crystals dispersed in a permeable liquid crystalline (LC) glass. Extrapolation to zero solubility gave a crystal density of 1.371 g cm(-3); the corresponding heat of the crystal-to-smectic transition was 10.1 M mol(-1). The solid-state morphology was examined by atomic force microscopy. A hierarchical structure was proposed for the smectic LC polymer in which mesogens organized into smectic layers, stacks of layers formed wavy lamellae, and assemblies of lamellae defined domains. The lamellar morphology remained after crystallization. It was suggested that crystallized PDEGBB possessed small crystals of low aspect ratio dispersed in the permeable LC phase. This model provided the structural basis for describing oxygen permeability in terms of the generalized Maxwell equation for spherical particles. [References: 70]
机译:这项研究检查了近晶聚(二甘醇4,4'-联苯甲酸酯)(PDEGBB)的固态结构和氧传输性质。将聚合物从各向同性的熔体中骤冷至近晶液晶玻璃,随后通过加热至高于玻璃化转变温度而等温结晶。结晶的PDEGBB通过热分析和X射线衍射表征。气体传输特性的特征在于在1个大气压下的氧气渗透性,扩散性和溶解性。氧的溶解度随结晶度线性降低,这取决于熔解热。该结果支持了分散在可渗透液晶(LC)玻璃中的不可渗透晶体的简单两相模型。外推至零溶解度,晶体密度为1.371 g cm(-3);晶体到近晶转变的相应热量为10.1 M mol(-1)。通过原子力显微镜检查固态形态。提出了用于层列液晶聚合物的分层结构,其中液晶元组织为层列层,形成波浪状薄片的层堆叠以及由薄片定义的域的集合。结晶后仍保持层状形态。有人认为,结晶的PDEGBB具有低纵横比的小晶体,分散在可渗透的LC相中。该模型提供了根据球形颗粒的广义麦克斯韦方程描述透氧性的结构基础。 [参考:70]

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