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区域异构螺二芴CANAL梯形聚合物及其气体分离性能。

Regioisomeric Spirobifluorene CANAL Ladder Polymers and Their Gas Separation Performance.

作者信息

Robinson Ashley M, Xia Yan

机构信息

Department of Chemistry, Stanford University, Stanford, California 94305, United States.

出版信息

ACS Macro Lett. 2024 Jan 9:118-123. doi: 10.1021/acsmacrolett.3c00725.

Abstract

We synthesized and characterized two isomeric microporous hydrocarbon ladder polymers from catalytic arene norbornene annulation (CANAL) of regioisomeric bis-norbornene fused spirobifluorenes, where the ladder chains are connected either through the same fluorene unit or across two different fluorene units in spirobifluorene. This pair of isomeric polymers was used to investigate the effect of ladder macromolecular structures on the microporosity and transport properties. Both polymers form mechanically intact films with thermal stability up to 480 °C and relatively high BET surface areas. The polymer formed from 2,7-dibromospirobifluorene showed higher BET surface area and higher gas permeability than the polymer from 2,2'-dibromospirobifluorene despite similar intersegmental spacing as indicated by X-ray scattering. The aging behavior for both polymers followed the same trend as the previously reported CANAL-fluorene polymers, with dramatically increased permselectivities over time, resulting in gas separation performance above the 2008 upper bounds for H/CH and O/N.

摘要

我们通过区域异构双降冰片烯稠合螺二芴的催化芳烃降冰片烯环化反应(CANAL)合成并表征了两种异构微孔烃梯形聚合物,其中梯形链通过螺二芴中相同的芴单元或跨越两个不同的芴单元相连。这对异构聚合物用于研究梯形大分子结构对微孔率和传输性能的影响。两种聚合物都形成了机械完整的薄膜,热稳定性高达480°C,且具有相对较高的BET表面积。尽管X射线散射表明链段间距相似,但由2,7-二溴螺二芴形成的聚合物比由2,2'-二溴螺二芴形成的聚合物具有更高的BET表面积和更高的气体渗透性。两种聚合物的老化行为与先前报道的CANAL-芴聚合物遵循相同的趋势,随着时间的推移,渗透选择性显著增加,导致H/CH和O/N的气体分离性能高于2008年的上限。

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