State Key Laboratory of Molecular Reaction Dynamics, Beijing National Laboratory for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
J Chem Phys. 2010 Feb 21;132(7):074308. doi: 10.1063/1.3299290.
We conducted a study of Fe(n)BO(2)(-) clusters by mass spectrometry and photoelectron spectroscopy. The vertical detachment energies and adiabatic detachment energies of these clusters were evaluated from their photoelectron spectra. We have also performed density-functional calculations of Fe(n)BO(2)(-) (n=1-5) clusters and determined their structures by comparison of theoretical calculations to experimental results. The studies show that BO(2) moiety still maintains its linear structure as the bare BO(2) cluster. BO(2) behaves as a superhalogen. Analysis of molecular orbitals reveals that the highest occupied molecular orbitals of Fe(n)BO(2)(-) clusters are mainly localized on the Fe(n) units.
我们通过质谱和光电子能谱研究了 Fe(n)BO(2)(-) 团簇。从光电子能谱评估了这些团簇的垂直离解能和绝热离解能。我们还对 Fe(n)BO(2)(-)(n=1-5)团簇进行了密度泛函计算,并通过理论计算与实验结果的比较确定了它们的结构。研究表明,BO(2) 部分仍然保持其线性结构,就像裸 BO(2) 团簇一样。BO(2) 表现为超卤素。分子轨道分析表明,Fe(n)BO(2)(-) 团簇的最高占据分子轨道主要定域在 Fe(n) 单元上。