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首页> 外文期刊>Macromolecules >Mechanically Tough, Thermally Rearranged (TR) Random/Block Poly(benzoxazole-co-imide) Gas Separation Membranes
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Mechanically Tough, Thermally Rearranged (TR) Random/Block Poly(benzoxazole-co-imide) Gas Separation Membranes

机译:机械强度高,热重排(TR)随机/嵌段聚(苯并恶唑-共酰亚胺)气体分离膜

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摘要

Insufficient mechanical properties are one of the major obstacles for the commercialization of ultrahigh permeability thermally rearranged (TR) membranes in large-scale gas separation applications. The incorporation of preformed benzoxazole/benzimidazole units into o-hydroxy copolyimide precursors, which themselves subsequently thermally rearrange to form additional benzoxazole units, were prepared for the first time. Using commercially available monomers, mechanically tough membranes prepared from random and block TR poly(benzoxazole-co-imide) copolymers (TR-PBOI) were investigated for gas separation. The effects of the chemical structures, copolymerization modes, and thermal holding time of o-hydroxy copolyimides on the molecular packing and properties, including gas transport, for the resulting TR-PBOI membranes have been examined in detail. After treatment at 400 degrees C, tough TR-PBOI membranes exhibited tensile strengths of 71.4-113.9 MPa and elongation at break of 5.1-16.1%. Moreover, they presented higher or comparable gas transport performance as compared to those tough/robust TR membranes reported previously. Reported for the first time is a comparative investigation of the copolymerization mode (random or block) on membrane properties. The novel polymer architecture and systematic property studies promote a better understanding of the materials and process development of commercial TR membranes for gas separation applications.
机译:机械性能不足是超大规模渗透性热重排(TR)膜在大规模气体分离应用中商业化的主要障碍之一。首次制备了将预先形成的苯并恶唑/苯并咪唑单元掺入邻羟基共聚酰亚胺前体中的方法,它们本身随后进行热重排以形成其他苯并恶唑单元。使用市售的单体,研究了由无规和嵌段TR聚(苯并恶唑共酰亚胺)共聚物(TR-PBOI)制备的机械韧性膜用于气体分离。详细检查了邻羟基共聚酰亚胺的化学结构,共聚模式和保温时间对分子堆积和性能(包括气体传输)的影响,以用于所得的TR-PBOI膜。在400℃下处理后,坚韧的TR-PBOI膜表现出71.4-113.9 MPa的拉伸强度和5.1-16.1%的断裂伸长率。此外,与先前报道的那些坚硬/坚固的TR膜相比,它们具有更高或相当的气体传输性能。首次报道的是共聚模式(无规或嵌段)对膜性能的比较研究。新颖的聚合物结构和系统的性能研究促进了对用于气体分离应用的商用TR膜的材料和工艺开发的更好理解。

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