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Synthesis of PEG-Functionalized Poly(diphenylacetylene)s and Their Gas Permeation Properties

机译:PEG-官能化聚二苯乙炔的合成及其气体渗透性能

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摘要

The polymerizations of 1-(3-methylphenyl)-2-(4-trimethylsilyl)phenylacetylene (1a) and 1-(4-methylphenyl)-2-(4-trimethylsilyl)phenylacetylene (1b) were carried out with TaCl5-n-Bu4Sn to give relatively high-molecular-weight polymers (2a and 2b) (M-n > 5 x 10(5)). The obtained polymers were brominated by using benzoyl peroxide and N-bromosuccinimide first, followed by substitution reaction of three types of polyethylene glycol. When diethylene glycol was used as a reagent on substitution reaction of meta-substituted polymer, PEG-functionalized poly(diphenylacetylene) with the highest content of oxyethylene unit [4a(2)] was obtained, and the degree of substitution was 0.60. The degrees of substitution decreased to 0.15 and 0.08 when the polyethylene glycols with higher molecular weights were used. PEG-substitution reaction to the para-substituted polymers was difficult to proceed, and hence the degree of substitution was 0.18 even when diethylene glycol was used. The CO2/N-2 separation factor of PEG-functionalized polymer [4a(2)] was as large as 28.8, although that of 2a was 7.41. The other PEG-functionalized polymers also exhibited high CO2 permselectivity, and their CO2/N-2 separation factors were over 20.
机译:1-(3-甲基苯基)-2-(4-三甲基甲硅烷基)苯基乙炔(1a)和1-(4-甲基苯基)-2-(4-三甲基甲硅烷基)苯基乙炔(1b)的聚合反应用TaCl5-n-进行。 Bu4Sn产生相对高分子量的聚合物(2a和2b)(Mn> 5 x 10(5))。首先通过使用过氧化苯甲酰和N-溴琥珀酰亚胺来溴化所获得的聚合物,然后进行三种类型的聚乙二醇的取代反应。当使用二甘醇作为间位取代聚合物的取代反应的试剂时,获得了氧化乙烯单元[4a(2)]含量最高的PEG官能化聚二苯乙炔,其取代度为0.60。当使用具有较高分子量的聚乙二醇时,取代度降低至0.15和0.08。 PEG难以发生对位取代聚合物的取代反应,因此,即使使用二甘醇,其取代度也为0.18。 PEG官能化聚合物[4a(2)]的CO2 / N-2分离系数高达28.8,而2a的分离系数为7.41。其他PEG官能化的聚合物也表现出高的CO2渗透选择性,其CO2 / N-2分离因子超过20。

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