聚酰亚胺
膜
二胺
材料科学
体积分数
三苯胺
气体分离
体积热力学
单体
圆周率
高分子化学
化学工程
聚合物
化学
纳米技术
复合材料
物理
热力学
生物化学
图层(电子)
工程类
作者
Xiangyun Liu,Yilei Wang,Shan Liu,Jiangzhou Luo,Xueping Zong,Song Xue
摘要
Abstract An effective strategy to optimize the gas separation performance of hyperbranched polyimide (hyper‐PI) membranes by tuning their average cavity sizes is reported. Triphenylamine (TAPA) and 4,4′‐(Hexafluoroisopropylidene) diphthalic anhydride (6FDA) were used to prepare the hyper‐PI membrane, and the transformation in free fraction volume (FFV) was realized by the addition of an extra B 2 ‐type monomer, 2,4,6‐Trimethylbenzene‐1,3‐diamine (DAM). In hyperbranched networks, DAM, in conjunction with 6FDA, generates longer linear parts and reduces the density of dendritic architectures formed by TAPA. The conformational freedom of hyperbranched TAPA‐6FDA is restricted, and chain packing is hindered. The ratio of DAM:TAPA predominantly influences both the average cavity sizes and the FFVs of the membranes, leading to the variation in gas permeabilities. DAM 5 :TAPA 1 ‐6FDA shows the best performance in both O 2 /N 2 and CO 2 /N 2 separations.
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