Liu Qing-Yu, Hu Lianrui, Li Zi-Yu, Ning Chuan-Gang, Ma Jia-Bi, Chen Hui, He Sheng-Gui
Beijing National Laboratory for Molecular Sciences, State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
Beijing National Laboratory for Molecular Sciences, Key Laboratory of Photochemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
J Chem Phys. 2015 Apr 28;142(16):164301. doi: 10.1063/1.4918589.
The isoeletronic diatomic MoC(-) and NbN(-) anions have been prepared by laser ablation and studied by photoelectron imaging spectroscopy combined with quantum chemistry calculations. The photoelectron spectra of NbN(-) can be very well assigned on the basis of literature reported optical spectroscopy of NbN. In contrast, the photoelectron spectra of MoC(-) are rather complex and the assignments suffered from the presence of many electronically hot bands and limited information from the reported optical spectroscopy of MoC. The electron affinities of NbN and MoC have been determined to be 1.450 ± 0.003 eV and 1.360 ± 0.003 eV, respectively. The good resolution of the imaging spectroscopy provided a chance to resolve the Ω splittings of the X(3)Σ(-) (Ω = 0 and 1) state of MoC and the X(4)Σ(-) (Ω = 1/2 and 3/2) state of MoC(-) for the first time. The spin-orbit splittings of the X(2)Δ state of NbN(-) and the a(2)Δ state of MoC(-) were also determined. The similarities and differences between the electronic structures of the NbN and MoC systems were discussed.
通过激光烧蚀制备了等电子双原子MoC(-)和NbN(-)阴离子,并结合量子化学计算,采用光电子成像光谱对其进行了研究。基于文献报道的NbN光谱,NbN(-)的光电子能谱能够得到很好的归属。相比之下,MoC(-)的光电子能谱相当复杂,由于存在许多电子热谱带以及MoC报道的光谱信息有限,其归属存在困难。已确定NbN和MoC的电子亲和能分别为1.450±0.003 eV和1.360±0.003 eV。成像光谱的高分辨率首次提供了分辨MoC的X(3)Σ(-)(Ω = 0和1)态以及MoC(-)的X(4)Σ(-)(Ω = 1/2和3/2)态的Ω分裂的机会。还确定了NbN(-)的X(2)Δ态和MoC(-)的a(2)Δ态的自旋轨道分裂。讨论了NbN和MoC体系电子结构之间的异同。