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含菲咯磷骨架的聚酰亚胺:气体传输性能与分子动力学模拟

Polyimides Containing Phosphaphenanthrene Skeleton: Gas-Transport Properties and Molecular Dynamics Simulations.

作者信息

Chatterjee Rimpa, Bisoi Soumendu, Kumar Anaparthi Ganesh, Padmanabhan Venkat, Banerjee Susanta

机构信息

Materials Science Centre, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.

Department of Chemical Engineering, Tennessee Technological University, Cookeville, Tennessee 38505, United States.

出版信息

ACS Omega. 2018 Oct 18;3(10):13510-13523. doi: 10.1021/acsomega.8b01364. eCollection 2018 Oct 31.

Abstract

A series of new semifluorinated polyimide (PI) films with phosphaphenanthrene skeleton were prepared by thermal imidization of poly(amic acid)s derived from a diamine monomer: 1,1-bis[2'-trifluoromethyl-4'-(4″-aminophenyl)phenoxy]-1-(6-oxido-6-dibenz⟨,⟩⟨1,2⟩oxaphosphorin-6-yl)ethane on reaction with four structurally different aromatic dianhydrides. The chemical structures of the polymers were established by Fourier transform infrared and H NMR spectroscopy techniques. The polymers showed a good combination of thermal and mechanical properties ( up to 416 °C under synthetic air and tensile strength up to 91 MPa), low dielectric constant (2.10-2.55 at 1 MHz), and values as high as 261 °C. Gas permeabilities of these films were investigated for four different gases CO, O, N, and CH. The PI films showed high gas permeability ( up to 175 and up to 64 barrer) with high permselectivity ( / up to 51 and / up to 7.1), and the values are better than those of many other similar polymers reported earlier. For the O/N gas pair, the PIs (PI A) surpassed the present upper boundary limit drawn by Robeson. A detailed molecular dynamics (MD) simulation study has been conducted to understand better the gas-transport properties. The effect of phosphaphenanthrene skeleton, its spatial arrangement, and size distribution function of the free volume were studied using molecular dynamics (MD) simulation and the results are correlated with the experimental data.

摘要

通过二胺单体

1,1-双[2'-三氟甲基-4'-(4″-氨基苯基)苯氧基]-1-(6-氧化-6-二苯并[c,e][1,2]氧杂磷杂环戊烯-6-基)乙烷与四种结构不同的芳香族二酐反应得到的聚酰胺酸热亚胺化制备了一系列具有磷菲骨架的新型半氟化聚酰亚胺(PI)薄膜。通过傅里叶变换红外光谱和核磁共振氢谱技术确定了聚合物的化学结构。这些聚合物表现出热性能和机械性能的良好组合(在合成空气中热分解温度高达416℃,拉伸强度高达91MPa)、低介电常数(1MHz下为2.10-2.55)以及高达261℃的玻璃化转变温度。研究了这些薄膜对四种不同气体CO、O₂、N₂和CH₄的气体渗透性。PI薄膜表现出高气体渗透性(CO₂渗透率高达175,O₂渗透率高达64巴耳)和高选择性(CO₂/N₂选择性高达51,O₂/N₂选择性高达7.1),这些值优于许多先前报道的其他类似聚合物。对于O₂/N₂气体对,这些聚酰亚胺(PI A)超过了罗布森绘制的当前上限。进行了详细的分子动力学(MD)模拟研究以更好地理解气体传输性能。使用分子动力学(MD)模拟研究了磷菲骨架的影响、其空间排列以及自由体积的尺寸分布函数,并将结果与实验数据相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1796/6644473/1f0d78dca3aa/ao-2018-01364m_0014.jpg

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