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源自2,2'-二溴-4,4',5,5'-联苯四甲酸二酐的用于气体分离膜的本征微孔聚酰亚胺

Intrinsically Microporous Polyimides Derived from 2,2'-Dibromo-4,4',5,5'-bipohenyltetracarboxylic Dianhydride for Gas Separation Membranes.

作者信息

Li Yongle, Lu Yao, Tian Chun, Wang Zhen, Yan Jingling

机构信息

Ningbo Institute of Material Technology & Engineering, Chinese Academy of Sciences, Ningbo 315201, China.

College of Chemical Engineering, Zhejiang University of Technology, Hangzhou 310014, China.

出版信息

Polymers (Basel). 2024 Apr 25;16(9):1198. doi: 10.3390/polym16091198.

Abstract

This work aims to expand the structure-property relationships of bromo-containing polyimides and the influence of bromine atoms on the gas separation properties of such materials. A series of intrinsically microporous polyimides were synthesized from 2,2'-dibromo-4,4',5,5'-bipohenyltetracarboxylic dianhydride (Br-BPDA) and five bulky diamines, (7,7'-(mesitylmethylene)bis(8-methyldibenzo[b,e][1,4]dioxin-2-amine) (MMBMA), 7,7'-(Mesitylmethylene)bis(1,8-dimethyldibenzo[b,e][1,4] dioxin-2-amine) (MMBDA), 4,10-dimethyl-6H,12H-5,11-methanodibenzo[b,f][1,5]diazocine-2,8-diamine (TBDA1), 4,10-dimethyl-6H,12H-5,11-methanodibenzo[b,f][1,5]diazocine-3,9-diamine (TBDA2), and (9R,10R)-9,10-dihydro-9,10-[1,2]benzenoanthracene-2,6-diamine (DAT). The Br-BPDA-derived polyimides exhibited excellent solubility, high thermal stability, and good mechanical properties, with their tensile strength and modulus being 59.2-109.3 MPa and 1.8-2.2 GPa, respectively. The fractional free volumes () and surface areas () of the Br-BPDA-derived polyimides were in the range of 0.169-0.216 and 211-342 m g, following the order of MMBDA > MMBMA > TBDA2 > DAT > TBDA1, wherein the Br-BPDA-MMBDA exhibited the highest and and thus highest CO permeability of 724.5 Barrer. Moreover, Br-BPDA-DAT displayed the best gas separation performance, with CO, H, O, N, and CH permeabilities of 349.8, 384.4, 69.8, 16.3, and 19.7 Barrer, and H/N selectivity of 21.4. This can be ascribed to the ultra-micropores (<0.7 nm) caused by the high rigidity of Br-BPDA-DAT. In addition, all the bromo-containing polymers of intrinsic microporosity membranes exhibited excellent resistance to physical ageing.

摘要

这项工作旨在拓展含溴聚酰亚胺的结构-性能关系以及溴原子对这类材料气体分离性能的影响。由2,2'-二溴-4,4',5,5'-联苯四甲酸二酐(Br-BPDA)与五种大位阻二胺(7,7'-(均三甲苯基亚甲基)双(8-甲基二苯并[b,e][1,4]二恶英-2-胺)(MMBMA)、7,7'-(均三甲苯基亚甲基)双(1,8-二甲基二苯并[b,e][1,4]二恶英-2-胺)(MMBDA)、4,10-二甲基-6H,12H-5,11-亚甲基二苯并[b,f][1,5]二氮杂辛-2,8-二胺(TBDA1)、4,10-二甲基-6H,12H-5,11-亚甲基二苯并[b,f][1,5]二氮杂辛-3,9-二胺(TBDA2)和(9R,10R)-9,10-二氢-9,10-[1,2]苯并蒽-2,6-二胺(DAT))合成了一系列具有固有微孔性的聚酰亚胺。由Br-BPDA衍生的聚酰亚胺表现出优异的溶解性、高热稳定性和良好的机械性能,其拉伸强度和模量分别为59.2 - 109.3 MPa和1.8 - 2.2 GPa。由Br-BPDA衍生的聚酰亚胺的自由体积分数()和表面积()在0.169 - 0.216和211 - 342 m²/g范围内,顺序为MMBDA > MMBMA > TBDA2 > DAT > TBDA1,其中Br-BPDA-MMBDA表现出最高的和,因此CO渗透率最高,为724.5 Barrer。此外,Br-BPDA-DAT表现出最佳的气体分离性能,CO、H₂、O₂、N₂和CH₄的渗透率分别为349.8、384.4、69.8、16.3和19.7 Barrer,H₂/N₂选择性为21.4。这可归因于Br-BPDA-DAT的高刚性所导致的超微孔(<0.7 nm)。此外,所有具有固有微孔性的含溴聚合物膜都表现出优异的抗物理老化性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/145d/11085140/c54df2bc3cea/polymers-16-01198-sch001.jpg

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