Efficient Methods for Screening of Metal Organic Framework Membranes for Gas Separations Using Atomically Detailed Models

被引:160
作者
Keskin, Seda [1 ]
Sholl, David S. [1 ]
机构
[1] Georgia Inst Technol, Sch Chem & Biomol Engn, Atlanta, GA 30332 USA
基金
美国国家科学基金会;
关键词
MOLECULAR-DYNAMICS SIMULATIONS; METHANE ADSORPTION; TRANSPORT DIFFUSIVITIES; ATOMISTIC SIMULATIONS; SELF-DIFFUSIVITIES; CARBON NANOTUBES; SILICA ZEOLITES; H-2; STORAGE; FORCE-FIELD; LIGHT GASES;
D O I
10.1021/la901438x
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Metal organic frameworks (MOFs) define a diverse class of nanoporous materials having potential applications in adsorption-based and membrane-based gas separations. We have previously used atomically detailed models to predict the performance of MOFs for membrane-based separations of gases, but these calculations require considerable computational resources and time. Here, we introduce an efficient approximate method for screening MOFs based on atomistic models that will accelerate the modeling of membrane applications. The validity of this approximate method is examined by comparison with detailed calculations for CH4/H-2, CO2/CH4, and CO2/H-2 mixtures at room temperature permeating through IRMOF-1 and CuBTC membranes. These results allow us to hypothesize a connection between two computationally efficient correlations predicting mixture adsorption and Mixture self-diffusion properties and the validity of our approximate screening method. We then apply our model to six additional MOFs, IRMOF-8, -9, -10, and -14, Zn(bdc)(ted)(0.5), and COF-102, to examine the effect of chemical diversity and interpenetration on the performance of metal organic framework membranes for light gas separations.
引用
收藏
页码:11786 / 11795
页数:10
相关论文
共 70 条
  • [61] Ab initio parametrized MM3 force field for the metal-organic framework MOF-5
    Tafipolsky, Maxim
    Amirjalayer, Saeed
    Schmid, Rochus
    [J]. JOURNAL OF COMPUTATIONAL CHEMISTRY, 2007, 28 (07) : 1169 - 1176
  • [62] Non-equilibrium molecular dynamics simulation of gas separation in a microporous carbon membrane
    Vieira-Linhares, AM
    Seaton, NA
    [J]. CHEMICAL ENGINEERING SCIENCE, 2003, 58 (18) : 4129 - 4136
  • [63] Comparative molecular simulation study of methane adsorption in metal-organic frameworks
    Wang, Sanyue
    [J]. ENERGY & FUELS, 2007, 21 (02) : 953 - 956
  • [64] Wesselingh JA., 2000, Mass Transfer in Multicomponent Mixtures
  • [65] Exceptional H2 saturation uptake in microporous metal-organic frameworks
    Wong-Foy, AG
    Matzger, AJ
    Yaghi, OM
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2006, 128 (11) : 3494 - 3495
  • [66] Reticular synthesis and the design of new materials
    Yaghi, OM
    O'Keeffe, M
    Ockwig, NW
    Chae, HK
    Eddaoudi, M
    Kim, J
    [J]. NATURE, 2003, 423 (6941) : 705 - 714
  • [67] Computational study of CO2 storage in metal-organic frameworks
    Yang, Qingyuan
    Zhong, Chongli
    Chen, Jian-Feng
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (05) : 1562 - 1569
  • [68] Molecular simulation of carbon dioxide/methane/hydrogen mixture adsorption in metal-organic frameworks
    Yang, Qingyuan
    Zhong, Chongli
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (36) : 17776 - 17783
  • [69] Gas permeability properties of Matrimid® membranes containing the metal-organic framework Cu-BPY-HFS
    Zhang, Yanfeng
    Musseman, Inga H.
    Ferraris, John P.
    Balkus, Kenneth J., Jr.
    [J]. JOURNAL OF MEMBRANE SCIENCE, 2008, 313 (1-2) : 170 - 181
  • [70] Hydrogen and methane adsorption in metal-organic frameworks: A high-pressure volumetric study
    Zhou, Wei
    Wu, Hui
    Hartman, Michael R.
    Yildirim, Taner
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2007, 111 (44) : 16131 - 16137