首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Features of the electron density in magnesium diboride: reconstruction from X-ray diffraction data and comparison with TB-LMTO and FPLO calculations
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Features of the electron density in magnesium diboride: reconstruction from X-ray diffraction data and comparison with TB-LMTO and FPLO calculations

机译:二硼化镁中电子密度的特征:从X射线衍射数据重建并与TB-LMTO和FPLO计算进行比较

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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 shared-type B-B interaction in the B-atom layer reveals that both sigma and pi components of the bonding are strong. A closed-shell-type weak B-B pi 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 similar to1.4 (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. [References: 47]
机译:考虑了使用多极模型从室温单晶X射线衍射强度重建的MgB2中的电子密度特征。总电子密度的拓扑分析已用于表征二硼化镁中的原子相互作用。 B原子层中的共享型B-B相互作用表明,键的sigma和pi成分均很强。还发现了沿晶胞c轴的闭壳型弱B-B pi相互作用。 Mg-B闭壳相互作用的结合路径朝着垂直的Mg原子链([110]方向)明显弯曲。后两个事实反映了沿[001]方向的两种键合相互作用。零通量原子盆上电子密度的积分揭示了从Mg原子到B原子网络的大约1.4(1)个电子的电荷转移。计算出的核位置处的电场梯度与实验NMR值非常吻合。还讨论了B原子的非谐位移。通过紧密结合的线性松饼-锡轨道(TB-LMTO)和全能非正交局部轨道(FPLO)方法计算电子密度,证实了X射线衍射的重建结果;例如,发现分别有1.5和1.6个电子的电荷转移。 [参考:47]

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