State Key Laboratory of Chemical Engineering and Department of Chemistry, East China University of Science and Technology, Shanghai 200237, PR China.
J Am Chem Soc. 2012 Jun 27;134(25):10478-84. doi: 10.1021/ja304879c. Epub 2012 Jun 12.
A general strategy for the synthesis of porous, fluorescent, triazine-framework-based membranes with intrinsic porosity through an aromatic nitrile trimerization reaction is presented. The essence of this strategy lies in the use of a superacid to catalyze the cross-linking reaction efficiently at a low temperature, allowing porous polymer membrane architectures to be facilely derived. With functionalized triazine units, the membrane exhibits an increased selectivity for membrane separation of CO(2) over N(2). The good ideal CO(2)/N(2) selectivity of 29 ± 2 was achieved with a CO(2) permeability of 518 ± 25 barrer. Through this general synthesis protocol, a new class of porous polymer membranes with tunable functionalities and porosities can be derived, significantly expanding the currently limited library of polymers with intrinsic microporosity for synthesizing functional membranes in separation, catalysis, and energy storage/conversion.
本文提出了一种通过芳香腈三聚反应合成具有本征多孔性的多孔、荧光三嗪骨架膜的通用策略。该策略的本质在于使用超强酸在低温下高效催化交联反应,从而可以轻易地得到多孔聚合物膜结构。通过功能化的三嗪单元,该膜对 CO(2)与 N(2)的膜分离表现出更高的选择性。在 CO(2)渗透速率为 518 ± 25 barrer 的情况下,实现了良好的理想 CO(2)/N(2)选择性 29 ± 2。通过这种通用的合成方案,可以得到具有可调功能和孔隙率的新型多孔聚合物膜,显著扩展了目前具有本征微孔的聚合物库,用于合成分离、催化和能量存储/转换中的功能性膜。