English

First-principles study on the intermediate compounds of LiBH$_4$

Materials Science 2009-11-11 v1

Abstract

We report the results of the first-principles calculation on the intermediate compounds of LiBH4_4. The stability of LiB3_3H8_8 and Li2_2Bn_nHn(n=512)_n (n=5-12) has been examined with the ultrasoft pseudopotential method based on the density functional theory. Theoretical prediction has suggested that monoclinic Li2_2B12_{12}H12_{12} is the most stable among the candidate materials. We propose the following hydriding/dehydriding process of LiBH4_4 via this intermediate compound : LiBH41/12_4 \leftrightarrow {1/12}Li2_{2}B12_{12}H12+5/6_{12} + {5/6} LiH +13/12+ {13/12}H2_2 \leftrightarrow LiH ++ B +3/2+ {3/2} H2_2. The hydrogen content and enthalpy of the first reaction are estimated to be 10 mass% and 56 kJ/mol H2_2, respectively, and those of the second reaction are 4 mass% and 125 kJ/mol H2_2. They are in good agreement with experimental results of the thermal desorption spectra of LiBH4_4. Our calculation has predicted that the bending modes for the Γ\Gamma-phonon frequencies of monoclinic Li2_2B12_{12}H12_{12} are lower than that of LiBH4_4, while stretching modes are higher. These results are very useful for the experimental search and identification of possible intermediate compounds.

Keywords

Cite

@article{arxiv.cond-mat/0606228,
  title  = {First-principles study on the intermediate compounds of LiBH$_4$},
  author = {N. Ohba and K. Miwa and M. Aoki and T. Noritake and S-i. Towata and Y. Nakamori and S-i. Orimo and A. Züttel},
  journal= {arXiv preprint arXiv:cond-mat/0606228},
  year   = {2009}
}

Comments

7 pages, 5 figures, submitted to PRB

R2 v1 2026-07-22T11:33:13.815Z