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首页> 外文期刊>RSC Advances >New phenazine-containing ladder polymer of intrinsic microporosity from a spirobisindane-based AB-type monomer
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New phenazine-containing ladder polymer of intrinsic microporosity from a spirobisindane-based AB-type monomer

机译:来自螺二茚的AB型单体的内在微孔的含新苯脲梯聚合物

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A new solution-processable ladder polymer (PSBI-AB) of intrinsic microporosity with dibenzodioxane linkages and bis(phenazine) units was designed and synthesized by self-polymerization of an AB-type monomer containing both catechol and aromatic dichloride groups. Such polymerization is an effective way to synthesize high molecular weight polymers and has a significant advantage over AA-BB polycondensation due to the lack of the requirement for strict control over stoichiometric balance. This protocol can be used to prepare a variety of phenazine-containing ladder type PIMs from their aromatic tetramethoxy precursors. The obtained polymer had high average molecular mass, excellent thermal stability, a high BET surface area of 705 m ~(2) g ~(?1) and good solubility in some organic solvents such as chloroform, m -cresol and dichlorobenzene. Gas permeation measurements showed comparable results to the previously reported analogous PIM-7 for films made under the same formation protocol.
机译:通过含有海硫醇和芳族二氯基的AB型单体的自聚合设计和合成了具有二苯并二氧烷键和双(苯脲素)单元的内在微孔的新的溶液可加工梯形聚合物(PSBI-AB)。这种聚合是合成高分子量聚合物的有效途径,并且由于缺乏严格控制化学计量平衡的要求,通过缺乏AA-BB缩聚具有显着优势。该方案可用于制备来自芳族四乙氧基前体的各种含苯脲梯型PIM。所得聚合物的平均分子量高,热稳定性优异,高BEES表面积为705m〜(2)G〜(α1),在一些有机溶剂如氯仿,M-筛选和二氯苯之类的有机溶剂中溶解。气体渗透测量结果显示出与在同一地层​​方案中制造的薄膜的先前报道的类似PIM-7的相当的结果。

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