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首页> 外文期刊>Journal of Materials Science >CO2-facilitated transport performance of poly(ionic liquids) in supported liquid membranes
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CO2-facilitated transport performance of poly(ionic liquids) in supported liquid membranes

机译:CO2促进了负载型液膜中聚离子液体的传输性能

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Six types of PILs were designed and synthesized by radical polymerization reaction and ion exchange reaction and the H-1 NMR analysis and TG-MS analysis proved the successful procedure and their CO2 permeation properties were evaluated. 1-butyl 3-methylimidazole double trifluoromethane sulfonate ([bmim][Tf2N])-based facilitated transport membrane, with 10 wt% poly([ViE-tIm] Tf2N), showed an excellent CO2 permeability of 920 Barrer, similar to that of the others investigated. PILs were distributed in the SILM using the "like dissolves like'' theory to investigate the gas permeation separation performance before and after doping of the PILs in SILM. Owing to the reversible interaction between the CO2 molecules and electropositive PIL chains, this supported ionic liquid membrane selectively transfer CO2 more rapidly. The polymer chains play the role of mobile CO2 carrier in the SLM, and introduce facilitated transport mechanism. This concept may provide a means for fabricating a highly permeable and selective membrane to break through Robeson's upper bound.
机译:通过自由基聚合反应和离子交换反应设计合成了六种类型的PIL,H-1 NMR和TG-MS分析证明了该方法的成功性,并对其CO2的渗透性能进行了评价。 1-甲基3-甲基咪唑双三氟甲烷磺酸盐([bmim] [Tf2N])基促进运输膜,具有10 wt%的聚([ViE-tIm] Tf2N),具有920 Barrer的出色CO2渗透性,与其他人进行了调查。利用“像溶解像”理论将PIL分布在SILM中,以研究在SILM中掺杂PIL之前和之后的气体渗透分离性能,由于CO2分子与电正性PIL链之间可逆相互作用,这种负载型离子液体膜选择性地更迅速地转移CO2。聚合物链在SLM中起可移动CO2载体的作用,并引入便利的运输机制,这一概念可为制造高渗透性和选择性的膜突破Robeson的上限提供一种手段。

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