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Study on adsorption performance of conjugated microporous polymers for hydrogen and organic solvents: The role of pore volume

机译:共轭微孔聚合物对氢和有机溶剂的吸附性能研究:孔体积的作用

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摘要

A series of homocoupled conjugated microporous polymers (HCMPs) were prepared by cross-coupling polymerization of 1,3,5-triethynylbenzene and 1,4-diethynylbenzene with various monomer molar ratios. Our results show that the molar ratio of monomers has a remarkable influence on the surface area, pore volume, and micropore volume of the as-synthesized HCMP samples. With the increase of molar ratio of 1,3,5-triethynylbenzene to 1,4-diethynylbenzene, the surface area and total pore volume increased while the micropore volume decreased for these HCMP samples. We also investigated the adsorption performance for hydrogen and organic solvents of these HCMP samples. Results obtained from experiments show that the increase of total pore volume (contributed from both mesopore and micropore) of HCMPs would lead to an increase in their adsorption abilities for organic solvents, while hydrogen sorption ability for HCMPs can only be improved by increasing their micropore volume, which may provide useful guidance for the rational design of novel HCMPs with different porosities as absorbent materials for oil/organic solvents or hydrogen storage systems.
机译:通过1,3,5-三乙炔基苯和1,4-二乙炔基苯在各种单体摩尔比下的交叉偶联聚合反应,制备了一系列均偶联的共轭微孔聚合物(HCMP)。我们的结果表明,单体的摩尔比对合成后的HCMP样品的表面积,孔体积和微孔体积有显着影响。随着1,3,5-三乙炔基苯与1,4-二乙炔基苯的摩尔比的增加,这些HCMP样品的表面积和总孔体积增加而微孔体积减少。我们还研究了这些HCMP样品对氢和有机溶剂的吸附性能。从实验中获得的结果表明,HCMP的总孔体积(由中孔和微孔共同产生)的增加将导致其对有机溶剂的吸附能力增强,而HCMP对氢的吸附能力只能通过增加其微孔体积来提高,这可能为合理设计具有不同孔隙率的新型HCMP作为油/有机溶剂或储氢系统的吸收材料提供有用的指导。

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