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Total result(s) found: 16
  • Metal–Organic Framework thin films on high-curvature nanostructures toward tandem electrocatalysis

    P. De Luna, W. Liang, A. Mallick, O. Shekhah, F. P. García de Arquer, A. H. Proppe, P. Todorović, S. O. Kelley, E. H. Sargent, M. Eddaoudi

    ACS Appl. Mater. Interfaces, 10 (37), pp 3122531232​

CO2 reduction reaction, Electrocatalysis, High-curvature nanostructures, Metal Organic Frameworks, Tandem catalysis, Thin films
  • Metal-Organic Frameworks mediate Cu coordination for selective CO2 electroreduction

    D-H. Nam, O. S. Bushuyev, J. Li, P. De Luna, A. Seifitokaldani, C-T. Dinh, F. P. García de Arquer, Y. Wang, Z. Liang, A. H. Proppe, C. S. Tan, P. Todorović, O. Shekhah, C. M. Gabardo, J. Woong Jo, J. Choi, M-J Choi, Se-W. Baek, J. Kim, D. Sinton, S. O. Ke

    J. Am. Chem. Soc., 140 (36), pp 1137811386, (2018)​

Electrochemical carbon dioxide reduction reaction, Metal-organic framework, MOF, CO2 Electroreduction
  • Metal–Organic Framework membranes: from fabrication to application in gas separation

    O. Shekhah, V. Chernikova, Y. Belmabkhout, M. Eddaoudi

    Preprints, 2018090010, (2018)​

MOFs, Membranes, Separation, Gas, Thin Film, Defects
  • Zeolite-like MOF nanocrystals incorporated 6FDA-polyimide mixed-matrix membranes for CO2/CH4 separation

    G. Liu, Y. Labreche, V. Chernikova, O. Shekhah, C. Zhang, Y. Belmabkhout, M. Eddaoudi, W. J. Koros

    Journal of Membrane Science 565, 186193, (2018)  ​

Zeolite-like MOF, Polyimide, Mixed matrix membranes, CO2/CH4 Separation
  • Upgrading gasoline to high octane numbers using a zeolite-like metal–organic framework molecular sieve with 


    M. I. H. Mohideen, Y. Belmabkhout, P. M. Bhatt, A. Shkurenko, Z. Chen, K. Adil, M. Eddaoudi

    Chem. Commun., 54, 9414-9417​​​​

Zeolite, Metalorganic frameworks, MOFs, ZMOF, Paraffin isomers, Energy efficiency, Kinetic separation
  • Carbonization of covalent triazine-based frameworks via ionic liquid induction 

    J. Jia, Z. Chen, Y. Belmabkhout, K. Adil, P. M. Bhatt, V. A. Solovyeva, O. Shekhah, M. Eddaoudi​​

    J. Mater. Chem. A, 6, 1556415568, (2018)

Porous organic polymers, POPs, Porous materials, Gas separation, Carbon capture
  • Enhanced CO2/CH4 separation performance of a mixed matrix membrane based on tailored MOF-polymer formulations

    Y. Liu, G. Liu, C. Zhang, W. Qiu, S. Yi, V. Chernikova, Z. Chen, Y. Belmabkhout, O. Shekhah, M. Eddaoudi, W. Koros

    Adv. Sci., 1800982, (2018)​

Mixed matrix membranes, Metal-organic frameworks, Natural gas separation, Subambien conditions
  • Topology meets MOF chemistry for pore-aperture fine tuning: ftw-MOF platform for energy-efficient separations via adsorption kinetics or molecular sieving

    D-X. Xue, A. Cadiau, Ł.J. Weseliński, H. Jiang, P.M. Bhatt, A. Shkurenko, L. Wojtas, C. Zhijie, Y. Belmabkhout, K. Adila, M. Eddaoudi

    Chem. Commun., Issue 54, Pages. 6404-6407​

Topology, MOFs, Pore-aperture fine-yuning, Energy-efficient separations, Adsorption kinetics or molecular sieving
  • Enriching the reticular chemistry repertoire: merged nets approach for the rational design of intricate mixed-linker MOF platforms

    H. Jiang, J. Jia, A. Shkurenko, Z. Chen, K.Adil, Y. Belmabkhout, L. J. Weselinski , A. H. Assen, D-X. Xue, M. O’Keeffe, M. Eddaoudi
    J. Am. Chem. Soc., 140 (28), pp 8858886​
Reticular chemistry, Intricate mixed-Linker, Metal-organic framework, MOFs
  • Nanosheets of nonlayered aluminum Metal–Organic Frameworks through a surfactant‐assisted method​

    A. Pustovarenko, M.G. Goesten, S. Sachdeva, M. Shan, Z. Amghouz, Y. Belmabkhout, A. Dikhtiarenko, T. Rodenas, D. Keskin, I.K. Voets, B.M. Weckhuysen, M. Eddaoudi, L.C.P.M. de Smet, E.J.R. Sudhölter, F. Kapteijn, B. Seoane, J. Gascon

    Adv. Mater., 1707234 (2018)

Chemical sensing, Crystal design, Gas separation, Metal-organic framework, MOFs, Nanolamellae, Molecular recognition
  • Peculiar molecular shape and size dependence of the dynamics of fluids confined in a Small-Pore Metal–Organic Framework
    I. Skarmoutsos, M. Eddaoudi, G. Maurin 
    J. Phys. Chem. Lett.  Volume 9, Issue 11, Pages 3014-3020 (2018)
Nanoporous materials, MOFs, Metal-organic framework, Polyatomic molecules, Diatomic molecules
  • ​Tailoring the crystal structure of nanoclusters unveiled high photoluminescence via Ion pairing
    M.S. Bootharaju, S.M. Kozlov, Z. Cao, A. Shkurenko, A.M. El-Zohry, O.F. Mohammed, M. Eddaoudi, O.M. Bakr, L. Cavallo, J-M. Basset
    Chem. Mater., Volume 30, Issue 8, Pages 2719–2725​ (2018)
NCs, Crystal structure of nanoclusters, High photoluminescence, Ion pairing
  • Zeolite-like metal–organic framework (MOF) encaged Pt(II)-porphyrin for anion-selective sensing
    D. Masih, V. Chernikova, O. Shekhah, M. Eddaoudi, O.F. Mohammed
    ACS Appl. Mater. Interfaces, Volume 10, Issue 14, Pages 11399–11405, (2018)
Anion sensing, Fluorescence quenching, Metalated porphyrin, Metal Organic Framework, Triplet state
  • Highly sensitive and selective SO2 MOF sensor: the integration of MFM-300 MOF as a sensitive layer on a capacitive interdigitated electrode

    V. Chernikova, O. Yassine, O. Shekhah, M. Eddaoudi, K.N. Salama

    J. Mater. Chem. A, Volume 6, Pages 5550-5554, (2018)

Sensors, Sulfur dioxide, MOF, MFM-300, SO2, Selectivity
  • Mixed matrix formulations with MOF molecular sieving for key energy-intensive separations                         
    G. Liu, V. Chernikova, Y. Liu, K. Zhang, Y. Belmabkhout, O. Shekhah, C. Zhang, S. Yi, M. Eddaoudi, W. J. Koros
    Nature Materials, Volume 17, Issue 3, Pages 283-+, (2018)
Metalorganic frameworks, MOF, Fcu-MOF, Chemical engineering, Energy efficiency, Energy-intensive separations, Crystals, Polymers
  • Reticular chemistry in action: a hydrolytically stable MOF capturing twice its weight in adsorbed water
    S. M. T. Abtab, D. Alezi, P. M. Bhatt, A. Shkurenko, Y. Belmabkhout, H. Aggarwal, Ł. J. Weseliński, N. Alsadun, U. Samin, M. Nejib Hedhili, M. Eddaoudi
    Chem, Volume 4, Issue 1, Pages 94–10 , (2018)
Metal-Organic Frameworks, Iron trimer, Chromium trinuclear, Water adsorption, Soc-MOF, High porosity, Hydrolytically stable material, Single-crystal X-Ray diffraction