TY - JOUR
T1 - Features of the electron density in magnesium diboride
T2 - Reconstruction from X-ray diffraction data and comparison with TB-LMTO and FPLO calculations
AU - Tsirelson, V.
AU - Stash, A.
AU - Kohout, M.
AU - Rosner, H.
AU - Mori, H.
AU - Sato, S.
AU - Lee, S.
AU - Yamamoto, A.
AU - Tajima, S.
AU - Grin, Yu
PY - 2003/10
Y1 - 2003/10
N2 - Features of the electron density in MgB2 reconstructed from room-temperature single-crystal X-ray diffraction intensities using a multipole model are considered. Topological analysis of the total electron density has been applied to characterize the atomic interactions in magnesium diboride. The sharedtype B - B interaction in the B-atom layer reveals that both σ and π components of the bonding are strong. A closed-shell-type weak B - B π interaction along the c axis of the unit cell has also been found. The Mg - B closed-shell interaction exhibits a bond path that is significantly curved towards the vertical Mg-atom chain ([110] direction). The latter two facts reflect two sorts of bonding interactions along the [001] direction. Integration of the electron density over the zero-flux atomic basins reveals a charge transfer of ∼1.4 (1) electrons from the Mg atoms to the B-atom network. The calculated electric-field gradients at nuclear positions are in good agreement with experimental NMR values. The anharmonic displacement of the B atoms is also discussed. Calculations of the electron density by tight-binding linear muffin-tin orbital (TB-LMTO) and full-potential non-orthogonal local orbital (FPLO) methods confirm the results of the reconstruction from X-ray diffraction; for example, a charge transfer of 1.5 and 1.6 electrons, respectively, was found.
AB - Features of the electron density in MgB2 reconstructed from room-temperature single-crystal X-ray diffraction intensities using a multipole model are considered. Topological analysis of the total electron density has been applied to characterize the atomic interactions in magnesium diboride. The sharedtype B - B interaction in the B-atom layer reveals that both σ and π components of the bonding are strong. A closed-shell-type weak B - B π interaction along the c axis of the unit cell has also been found. The Mg - B closed-shell interaction exhibits a bond path that is significantly curved towards the vertical Mg-atom chain ([110] direction). The latter two facts reflect two sorts of bonding interactions along the [001] direction. Integration of the electron density over the zero-flux atomic basins reveals a charge transfer of ∼1.4 (1) electrons from the Mg atoms to the B-atom network. The calculated electric-field gradients at nuclear positions are in good agreement with experimental NMR values. The anharmonic displacement of the B atoms is also discussed. Calculations of the electron density by tight-binding linear muffin-tin orbital (TB-LMTO) and full-potential non-orthogonal local orbital (FPLO) methods confirm the results of the reconstruction from X-ray diffraction; for example, a charge transfer of 1.5 and 1.6 electrons, respectively, was found.
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U2 - 10.1107/S0108768103012072
DO - 10.1107/S0108768103012072
M3 - Article
C2 - 14586076
AN - SCOPUS:2442680674
SN - 0108-7681
VL - 59
SP - 575
EP - 583
JO - Acta Crystallographica Section B: Structural Science
JF - Acta Crystallographica Section B: Structural Science
IS - 5
ER -