Stiles P L, Moore D T, Miller R E
Department of Chemistry, University of North Carolina, Chapel Hill 27599, USA.
J Chem Phys. 2004 Aug 15;121(7):3130-42. doi: 10.1063/1.1768932.
High-resolution infrared laser spectroscopy has been used to determine the structures of HCN-Mgn complexes formed in helium nanodroplets. The magnesium atoms are first added to the droplets to ensure that the magnesium complexes are preformed before the HCN molecule is added. The vibrational frequencies, structures, and dipole moments of these complexes are found to vary dramatically with cluster size, illustrating the nonadditive nature of the HCN-magnesium interactions. All of the complexes discussed here have the nitrogen end of the HCN pointing towards the magnesium clusters. For Mg3, the HCN binds to the "threefold" site, yielding a symmetric top spectrum. Although the HCN-Mg4 complex also has C3v symmetry, the HCN sits "on-top" of a single magnesium atom. These structures are confirmed by both ab initio calculations and measurements of the dipole moments. Significant charge transfer is observed in the case of HCN-Mg4, indicative of charge donation from the lone pair on the nitrogen of HCN into the lowest unoccupied molecular orbital of the Mg4.
高分辨率红外激光光谱已被用于确定在氦纳米液滴中形成的HCN-Mgn配合物的结构。首先将镁原子添加到液滴中,以确保在添加HCN分子之前预先形成镁配合物。发现这些配合物的振动频率、结构和偶极矩随团簇大小而显著变化,这说明了HCN与镁相互作用的非加和性。这里讨论的所有配合物中,HCN的氮端都指向镁团簇。对于Mg3,HCN与“三重”位点结合,产生对称陀螺光谱。尽管HCN-Mg4配合物也具有C3v对称性,但HCN位于单个镁原子的“顶上”。这些结构通过从头算计算和偶极矩测量得到了证实。在HCN-Mg4的情况下观察到显著的电荷转移,这表明HCN氮上的孤对电子向Mg4的最低未占据分子轨道进行了电荷捐赠。