| Literature DB >> 26515558 |
Yujie Ban1,2, Zhengjie Li3, Yanshuo Li4, Yuan Peng1,2, Hua Jin1,2, Wenmei Jiao1,2, Ang Guo1,2, Po Wang1,2, Qingyuan Yang5, Chongli Zhong3, Weishen Yang6.
Abstract
Fine-tuning of effective pore size of microporous materials is necessary to achieve precise molecular sieving properties. Herein, we demonstrate that room temperature ionic liquids can be used as cavity occupants for modification of the microenvironment of MOF nanocages. Targeting CO2 capture applications, we tailored the effective cage size of ZIF-8 to be between CO2 and N2 by confining an imidazolium-based ionic liquid [bmim][Tf2 N] into ZIF-8's SOD cages by in-situ ionothermal synthesis. Mixed matrix membranes derived from ionic liquid-modified ZIF-8 exhibited remarkable combinations of permeability and selectivity that transcend the upper bound of polymer membranes for CO2 /N2 and CO2 /CH4 separation. We observed an unusual response of the membranes to varying pressure, that is, an increase in the CO2 /CH4 separation factor with pressure, which is highly desirable for practical applications in natural gas upgrading.Entities:
Keywords: CO2 capture; ZIF-8; confinement; ionic liquids; molecular sieving
Year: 2015 PMID: 26515558 DOI: 10.1002/anie.201505508
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336