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Functionalized boranes for hydrogen storage
Authors:Pathak Biswarup  Pradhan Kalpataru  Hussain Tanveer  Ahuja Rajeev  Jena Purusottam
Affiliation:Department of Physics and Astronomy, Uppsala University, Uppsala, Sweden.
Abstract:Using density functional theory, the generalized gradient approximation for the exchange‐correlation potential and Møller–Plesset perturbation theory we study the hydrogen uptake of Li‐ and Mg‐doped boranes. Specifically, we calculate the structures and binding energies of hydrogen molecules sequentially attached to LiB6H7, LiB12H13, Li2B6H6, Li2B12H12, MgB6H6, and MgB12H12. Up to three H2 molecules can be bound quasi‐molecularly to each of the metal cations with binding energies per H2 molecule ranging between 0.07 eV and 0.27 eV. The corresponding gravimetric densities lie in the range of 3.49 to 12 wt %, not counting the H atoms bound chemically to the B atoms.
Keywords:boranes  density functional calculations  desorption energy  doping  hydrogen storage
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