Surface interactions and quantum kinetic molecular sieving for H2 and D2 adsorption on a mixed metal-organic framework material

被引:421
作者
Chen, Banglin [1 ]
Zhao, Xuebo [2 ,3 ]
Putkham, Apipong [2 ,3 ]
Hong, Kunlun [5 ,6 ]
Lobkovsky, Emil B. [4 ]
Hurtado, Eric J. [1 ]
Fletcher, Ashleigh J. [2 ,3 ]
Thomas, K. Mark [2 ,3 ]
机构
[1] Univ Texas Pan Amer, Dept Chem, Edinburg, TX 78539 USA
[2] Newcastle Univ, No Carbon Res Labs, Sir Joseph Swan Inst Energy Res, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England
[3] Newcastle Univ, Sch Chem Engn & Adv Mat, Newcastle Upon Tyne NE1 7RU, Tyne & Wear, England
[4] Cornell Univ, Baker Lab, Dept Biol & Chem, Ithaca, NY 14853 USA
[5] Oak Ridge Natl Lab, Div Chem Sci, Oak Ridge, TN USA
[6] Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, Oak Ridge, TN USA
关键词
D O I
10.1021/ja710144k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A rational strategy has been used to immobilize open metal sites in ultramicroporosity for stronger binding of multiple H-2 molecules per unsaturated metal site for H-2 storage applications. The synthesis and structure of a mixed zinc/copper metal-organic framework material Zn-3(BDC)(3)[CU(Pyen)] center dot(DMF)(5)(H2O)(5) (H2BDC = 1,4 benzenedicarboxylic acid and PyenH(2) = 5-methyl-4-oxo-1,4-dihydro-pyridine-3-carbaldehyde) is reported. Desolvation provides a bimodal porous structure Zn-3(BDC)(3)[Cu(Pyen)] (M'MOF 1) with narrow porosity (<0.56 nm) and an array of pores in the bc crystallographic plane where the adsorbate-adsorbent interactions are maximized by both the presence of open copper centers and overlap of the potential energy fields from pore walls. The H-2 and D-2 adsorption isotherms for M'MOF 1 at 77.3 and 87.3 K were reversible with virtually no hysteresis. Methods for determination of the isosteric enthalpies of H-2 and D-2 adsorption were compared. A virial model gave the best agreement (average deviation <1 standard deviation) with the isotherm data. This was used in conjunction with the van't Hoff isochore giving isosteric enthalpies at zero surface coverage of 12.29 +/- 0.53 and 12.44 +/- 0.50 kJ mol(-1) for H-2 and D-2 adsorption, respectively. This is the highest value so far observed for hydrogen adsorption on a porous material. The enthalpy of adsorption, decreases with increasing amount adsorbed to 9.5 kJ mol(-1) at similar to 1.9 mmol g(-1) (2 H-2 or D-2 molecules per Cu corresponding to adsorption on both sides of planar Cu open centers) and is virtually unchanged in the range 1.9-3.6 mmol g(-1). Virial analysis of isotherms at 87.3 K is also consistent with two H-2 or D-2 molecules being bound to each open Cu center. The adsorption kinetics follow a double exponential model, corresponding to diffusion along two types of pores, a slow component with high activation energy (13.35 +/- 0.59 kJ mol(-1)) for the narrow pores and a faster component with low activation energy (8.56 +/- 0.41 kJ mol(-1)). The D-2 adsorption kinetic constants for both components were significantly faster than the corresponding H-2 kinetics for specific pressure increments and had slightly lower activation energies than the corresponding values for H-2 adsorption. The kD(2)/kH(2) ratio for the slow component was 1.62 +/- 0.07, while the fast component was 1.38 +/- 0.04 at 77.3 K, and the corresponding ratios were smaller at 87.3 K. These observations of kinetic isotope quantum molecular sieving in porous materials are due to the larger zero-point energy for the lighter H-2, resulting in slower adsorption kinetics compared with the heavier D-2. The results show that a combination of open metal centers and confinement in ultramicroporosity leads to a high enthalpy for H-2 adsorption over a wide range of surface coverage and quantum effects influence diffusion of H-2 and D-2 in pores in M'MOF 1.
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页码:6411 / 6423
页数:13
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共 117 条
  • [1] Organoplatinum crystals for gas-triggered switches
    Albrecht, M
    Lutz, M
    Spek, AL
    van Koten, G
    [J]. NATURE, 2000, 406 (6799) : 970 - 974
  • [2] [Anonymous], 1993, CRC HDB CHEM PHYS
  • [3] Porosity, surface area, surface energy, and hydrogen adsorption in nanostructured carbons
    Ansón, A
    Jagiello, J
    Parra, JB
    Sanjuán, ML
    Benito, AM
    Maser, WK
    Martínez, MT
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2004, 108 (40) : 15820 - 15826
  • [4] ARYA F, 1983, SYNTHESIS-STUTTGART, P946
  • [5] A new type of material for the recovery of hydrogen from gas mixtures
    Atwood, JL
    Barbour, LJ
    Jerga, A
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2004, 43 (22) : 2948 - 2950
  • [6] ADSORPTION EQUILIBRIA OF HYDROGEN, DEUTERIUM, AND THEIR MIXTURES .1.
    BASMADJIAN, D
    [J]. CANADIAN JOURNAL OF CHEMISTRY-REVUE CANADIENNE DE CHIMIE, 1960, 38 (01): : 141 - 148
  • [7] Influence of connectivity and porosity on ligand-based luminescence in zinc metal-organic frameworks
    Bauer, Christina A.
    Timofeeva, Tatiana V.
    Settersten, Thomas B.
    Patterson, Brian D.
    Liu, Vincent H.
    Simmons, Blake A.
    Allendorf, Mark D.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (22) : 7136 - 7144
  • [8] MOLECULAR-TRANSPORT IN THE NANOMETER REGIME
    BEENAKKER, JJM
    BORMAN, VD
    KRYLOV, SY
    [J]. PHYSICAL REVIEW LETTERS, 1994, 72 (04) : 514 - 517
  • [9] MOLECULAR-TRANSPORT IN SUBNANOMETER PORES - ZERO-POINT ENERGY, REDUCED DIMENSIONALITY AND QUANTUM SIEVING
    BEENAKKER, JJM
    BORMAN, VD
    KRYLOV, SY
    [J]. CHEMICAL PHYSICS LETTERS, 1995, 232 (04) : 379 - 382
  • [10] Different adsorption behaviors of methane and carbon dioxide in the isotypic nanoporous metal terephthalates MIL-53 and MIL-47
    Bourrelly, S
    Llewellyn, PL
    Serre, C
    Millange, F
    Loiseau, T
    Férey, G
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2005, 127 (39) : 13519 - 13521