首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Pure gas and vapor permeation properties of poly[l-phenyl-2-[p- (trimethylsilyl)phenyl]acetylene] (PTMSDPA) and its desilylated analog,poly[diphenylacetylene] (PDPA)
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Pure gas and vapor permeation properties of poly[l-phenyl-2-[p- (trimethylsilyl)phenyl]acetylene] (PTMSDPA) and its desilylated analog,poly[diphenylacetylene] (PDPA)

机译:聚[1-苯基-2- [对-(三甲基硅烷基)苯基]乙炔](PTMSDPA)及其去甲硅烷基类似物聚[二苯基乙炔](PDPA)的纯气体和蒸汽渗透性能

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摘要

The permeabilities of He,H_2,N_2,O_2,CO_2,CH_4,C_2H_6,C_3H_8,and n-C_4H_(10) in poly[l-phenyl-2-[p-(trimethylsilyl)phenyl]acetylene] (PTMSDPA) and poly[diphenylacetylene] (PDPA) are presented and compared to those of poly(l-trimethylsilyl-l-propyne) (PTMSP),poly(l-phenyl-l-propyne) (PPP),and polysulfone.Like PTMSP,PTMSDPA,a disubstituted glassy acetylene-based polymer,exhibits higher permeabilities to organic vapors than to permanent gases due to its rigid polyacetylene backbone and bulky side groups,which provide a relatively high fractional free volume (FFV) value of 0.26.Desilylation was performed on PTMSDPA.The resulting material,PDPA,is totally insoluble in common organic solvents,so it has much higher chemical resistance than PTMSDPA.Additionally,due to its insolubility in polymerization solvents,desilylation provides the only known route to high molar mass PDPA.The FFV of the resulting membrane (PDPA) is reduced by approximately 12% relative to that of PTMSDPA.This leads to a decrease in gas permeability values and selectivity of organic vapors relative to nitrogen.For example,the oxygen permeability is reduced from 1200 to 500 Barrers upon desilylation.The pure gas selectivities decrease from 9 to 3 for n-C_4H_(10)/N_2 and from 26 to 9 for C_3H_8/N_2.
机译:He,H_2,N_2,O_2,CO_2,CH_4,C_2H_6,C_3H_8和n-C_4H_(10)在聚[1-苯基-2- [对-(三甲基甲硅烷基)苯基]乙炔](PTMSDPA)中的磁导率介绍了[二苯基乙炔](PDPA)并将其与聚(1-三甲基甲硅烷基-1-丙炔)(PTMSP),聚(1-苯基-1-丙炔)(PPP)和聚砜的那些进行比较。类似于PTMSP,PTMSDPA,a双取代的玻璃状乙炔基聚合物由于其刚性的聚乙炔主链和庞大的侧基而对有机蒸气的渗透性高于对永久气体的渗透性,提供相对较高的分数自由体积(FFV)值为0.26.PTMSDPA进行了脱甲硅烷基化。生成的材料PDPA完全不溶于普通的有机溶剂,因此比PTMSDPA具有更高的耐化学性。此外,由于它在聚合溶剂中的不溶性,因此甲硅烷基化提供了获得高摩尔质量PDPA的唯一已知途径。膜(PDPA)相对于PTMSDPA减少了约12%,这导致气体渗透率值和相对于氮的有机蒸气选择性增加。例如,在进行甲硅烷基化反应后,氧气渗透率从1200 Barrers降低至500 Barrers.n-C_4H_(10)/ N_2的纯气体选择性从9降低至3 C_3H_8 / N_2为26至9。

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