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Theoretical hydrogen cryostorage in doped MIL-101(Cr) metal-organic frameworks

  • IPR (Institut de Physique de Rennes) - UMR 6251
  • Unité Chimie et Procédés
  • University of Montpellier (UMR MiVEGEC)

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

33 Citations (Scopus)

Résumé

The cryoadsorption (77 K) of H 2 in the MIL-101(Cr) [MIL: Materials from the Institute Lavoisier] metal-organic framework (MOF) material and its Li +, Mg 2+, Mn 2+, and Co 2+-doped analogues was explored by grand canonical Monte Carlo simulations (GCMC). The optimal hydrogen uptake in this highly porous material is still experimentally unknown considering the experimental difficulty to fully activate this sample. Indeed, a H 2 adsorption isotherm has only been measured for a mildly activated version (MIL-101b(Cr)). Moreover, the recent adsorption of CO 2 in better activated form (MIL-101c(Cr)) shows an increase up to 30% of the saturation capacity in comparison to MIL-101b(Cr). From GCMC simulations, we provide the optimal uptake and delivery of H 2 at 77 K in the MIL-101(Cr) and its doped analogues at 77 K. For the Li-doped material we predict a hydrogen uptake of 10 wt % and a delivery of 6 wt %, which achieve the mass storage and delivery density target established by the U.S. Department of Energy for 2015.

langue originaleAnglais
Pages (de - à)10504-10509
Nombre de pages6
journalJournal of Physical Chemistry C
Volume116
Numéro de publication19
Les DOIs
étatPublié - 17 mai 2012
Modification externeOui

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