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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Novel semi-alicyclic polyimide membranes: Synthesis, characterization, and gas separation properties
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Novel semi-alicyclic polyimide membranes: Synthesis, characterization, and gas separation properties

机译:新型半脂环族聚酰亚胺膜:合成,表征和气体分离性能

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To develop membrane materials for gas separation, a series of semi-alicyclic polyimides was synthesized using one-step thermal solution imidization from an alicyclic dianhydride with non-planar twisted structure, 5-(2,5-dioxotetrahydrofuryl)-3-methyl-3-cyclohexene-1,2-dicarboxylic anhydride (DOCDA). All synthesized polyimides exhibited amorphous structures and superior thermal stability, with high glass transition temperatures (242-288 degrees C) withstanding high operation temperature and pressure. They also showed excellent solubility in many polar organic solvents commonly used in the fabrication of gas separation membranes. The gas permeation properties of the polyimide membranes were measured for six representative gases (H-2 CO2, O-2, CO, N-2, and CH4). The gas permeabilities and selectivities of polyimide membranes were significantly influenced by the chemical structure of the diamines, which could be explained reasonably by the kinetic diameter of gases, the fractional free volumes, and d-spacing values of the polyimides. Two DOCDA-based polyimides showed very high selectivities for H-2/CH4 and CO2/CH4 and slightly low permeabilities for H-2 and CO2 , which performances were comparable to the commercial polyimide materials such as P84 (R) and Matrimid (R) used in gas separation field. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了开发用于气体分离的膜材料,使用一系列半脂环族聚酰亚胺,使用非平面扭曲结构,5-(2,5-二氧化四氢呋喃)-3-甲基-3环己烯-1,2-二羧酸酐(DOCDA)。所有合成的聚酰亚胺都表现出非晶结构和优异的热稳定性,具有高玻璃化转变温度(242-288℃),具有高效温度和压力。它们还在许多常用于气体分离膜的极性有机溶剂中表现出优异的溶解度。测量聚酰亚胺膜的气体渗透性能,用于六种代表性气体(H-2 CO 2,O-2,CO,N-2和CH 4)。聚酰亚胺膜的气体渗透性和选择性受到二胺的化学结构的显着影响,这可以通过气体的动力学直径,分数自由体积和聚酰亚胺的D-间距值来解释。两种基于DOCDA的聚酰亚胺显示出H-2 / CH 4和CO 2 / CH4的非常高的选择性,H-2和CO 2的略微低渗透性,其性能与商业聚酰亚胺材料相当,例如P84(R)和基质(R)用于气体分离场。 (c)2018年elestvier有限公司保留所有权利。

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