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用于膜气体分离的高效聚合物分子筛。

An efficient polymer molecular sieve for membrane gas separations.

机构信息

School of Chemistry, Cardiff University, Cardiff, UK.

出版信息

Science. 2013 Jan 18;339(6117):303-7. doi: 10.1126/science.1228032.

Abstract

Microporous polymers of extreme rigidity are required for gas-separation membranes that combine high permeability with selectivity. We report a shape-persistent ladder polymer consisting of benzene rings fused together by inflexible bridged bicyclic units. The polymer's contorted shape ensures both microporosity-with an internal surface area greater than 1000 square meters per gram-and solubility so that it is readily cast from solution into robust films. These films demonstrate exceptional performance as molecular sieves with high gas permeabilities and good selectivities for smaller gas molecules, such as hydrogen and oxygen, over larger molecules, such as nitrogen and methane. Hence, this polymer has excellent potential for making membranes suitable for large-scale gas separations of commercial and environmental relevance.

摘要

对于兼具高渗透性和选择性的气体分离膜而言,需要使用具有极高刚性的微孔聚合物。我们报道了一种由苯环通过刚性桥联双环单元连接而成的具有形状保持特性的梯型聚合物。该聚合物的扭曲形状确保了微孔性(比表面积大于每克 1000 平方米)和溶解性,因此它可以很容易地从溶液中铸造成坚固的薄膜。这些薄膜作为分子筛表现出优异的性能,对较小的气体分子(如氢和氧)具有较高的渗透性和选择性,而对较大的分子(如氮和甲烷)则具有较好的选择性。因此,这种聚合物具有很大的潜力,可以用来制造适用于商业和环境相关的大规模气体分离的膜。

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