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Syntheses and evaluation of gas transport properties in polystyrene-POSS membranes

机译:聚苯乙烯-POSS膜的合成和输气性能评估

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Copolymers based on styrene and a nanostructured polyhedral oligomeric silsesquioxane, PSPOSS, were synthesized and their gas permeability coefficients, P(i), to O_2 and N_2 were measured at 2.0265 x 10~5 Pa (2 atm) and 35℃ in a standard permeation cell. The syntheses of the copolymers were carried out using styrene and different loads of the macro initiator POSS-TEMPO which was also synthesized in this work. The gas transport results show that the gas permeability coefficients in the PSPOSS polymers increases with the amount of the POSS-TEMPO used in the synthesis, but interestingly, for relatively low concentrations, i.e. up to 10 wt.%, the selectivity for the gas pair O_2/N_2 does not show dramatic losses in the selectivity. The P(O_2) for pure PS, which is 21.75145 x 10~(-18) m~2 s~(-1) Pa~(-1) (2.9 Barrer) with 5.6 O_2/N_2 selectivity, increases to 37.5025 x 10~(-18) m~2 s~(-1) Pa~(-1) (5.0 Barrer) and the selectivity still remains as high as 5.2 for a PSPOSS synthesized with a 10 wt.% load of the macro initiator. When the PSPOSS is synthesized with higher loads of the macro initiator, i.e. 20 wt.%, there are impressive increases in permeability with decreases in the O_2/N_2 selectivity. After factorization of the permeability coefficients into the diffusivity and solubility factors, it is observed that having POSS units in the copolymer affect the perm-selectivity of the PS membranes. This effect can be attributed to changes in the gas diffusivity rather than changes in the solubility coefficients for PS synthesized with up to 10 wt.% of POSS-TEMPO. Higher loads of the POSS-TEMPO in the PSPOSS membranes increase both the diffusivity and selectivity coefficients.
机译:合成了基于苯乙烯和纳米结构的多面体低聚倍半硅氧烷PSPOSS的共聚物,并在标准渗透率下于2.0265 x 10〜5 Pa(2 atm)和35℃下测量了它们对O_2和N_2的透气系数P(i)细胞。共聚物的合成是使用苯乙烯和不同负载量的大引发剂POSS-TEMPO进行的,POSS-TEMPO也在此工作中进行了合成。气体传输结果表明,PSPOSS聚合物中的气体渗透系数随合成中使用的POSS-TEMPO的数量而增加,但有趣的是,对于相对低的浓度(即最高10 wt。%),气体对的选择性O_2 / N_2的选择性没有明显降低。纯PS的P(O_2)为21.75145 x 10〜(-18)m〜2 s〜(-1)Pa〜(-1)(2.9 Barrer),选择性为5.6 O_2 / N_2,增加到37.5025 x 10 〜(-18)m〜2 s〜(-1)Pa〜(-1)(5.0 Barrer),对于以10 wt。%的大分子引发剂合成的PSPOSS,选择性仍然保持高达5.2。当以较大的引发剂负荷,即20wt。%合成PSPOSS时,渗透率显着增加,而O_2 / N_2选择性降低。将渗透系数分解为扩散系数和溶解度系数后,可以发现共聚物中具有POSS单元会影响PS膜的渗透选择性。这种影响可以归因于气体扩散率的变化,而不是由于POSS-TEMPO的合成含量高达10%(重量)而导致的PS的溶解度系数发生了变化。 PSPOSS膜中POSS-TEMPO的较高负载会增加扩散系数和选择性系数。

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