Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9578458 | Chemical Physics Letters | 2005 | 6 Pages |
Abstract
We report density functional theory calculations on the energy of LiBH4, relative to solid B and LiH and gaseous H2. The calculated energy is â71.3 (â76.1)Â kJ/mol H2 which can be approximately corrected for zero-point energy to give an enthalpy of â52 (â57)Â kJ/mol H2 at the PW91 (LDA) level, smaller than but similar to the experimental value of â68.9Â kJ/mol H2. Calculations on four different LiBH4 phases indicate that alternative phases are not accessible at low temperatures without applying high pressures. These results indicate that complete decomposition to H2, B and LiH is not an attractive means of obtaining a reversible hydrogen storage system based on LiBH4.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Terry J. Frankcombe, Geert-Jan Kroes, Andreas Züttel,