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Poly(dimethylsiloxane-urethane) membranes: Effect of hard segment in urethane on gas transport properties

机译:聚二甲基硅氧烷-氨基甲酸乙酯膜:氨基甲酸酯中的硬链段对气体传输性能的影响

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In this study, a series of PDMS-PU membranes based on PDMS soft segment and HMDI, TDI and MDI hard segments were synthesized in order to investigate the structure-gas transport relationships. The PDMS-PU membranes synthesized were characterized by DSC and SEM measurements. The restriction of chain mobility has been shown by the formation of hydrogen bonding in the soft segment and hard segment domains, resulting in the increase in density and glass-transition temperature of the soft segment. SEM analysis showed that the microphase separation involved in the PDMS-PU membranes. Gas permeation measurements were carried for O-2, N-2 and CO2 gases by employing different pressures. The permeability of O-2 and N-2 are independent with the pressure and CO2 shows dependency with pressure. Increase in PDMS soft segment led to increase in permeability for all the gases. This might be the phase separation involved in both hard segment and soft segment due to the difference of solubility parameter, and the dispersed PDMS phases in the membranes serve to produce a lower resistance route for diffusing molecules. The perruselectivity for O-2/N-2 gas pairs of the synthesized membranes are in the range of 2.3-2.5 and for CO2/N-2 gas pairs from 8.5 to 14.5. The gel content of the membranes was determined by using Soxhlet extraction apparatus. (c) 2006 Elsevier B.V. All rights reserved.
机译:本研究合成了一系列基于PDMS软链段和HMDI,TDI和MDI硬链段的PDMS-PU膜,以研究其结构-气体传输关系。通过DSC和SEM测量对合成的PDMS-PU膜进行表征。链迁移率的限制已通过在软链段和硬链段域中形成氢键显示出来,导致软链段的密度和玻璃化转变温度增加。 SEM分析表明,PDMS-PU膜涉及微相分离。通过使用不同的压力对O-2,N-2和CO2气体进行气体渗透测量。 O-2和N-2的渗透率与压力无关,而CO2随压力而变。 PDMS软段的增加导致所有气体的渗透率增加。由于溶解度参数的差异,这可能是硬链段和软链段都涉及的相分离,并且膜中分散的PDMS相用于产生较低的分子扩散阻力路径。合成膜的O-2 / N-2气对的全选择性在2.3-2.5范围内,CO2 / N-2气对的全选择性在8.5至14.5之间。膜的凝胶含量通过使用索氏提取仪测定。 (c)2006 Elsevier B.V.保留所有权利。

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