TY - JOUR
T1 - Cryogenic Photoelectron Spectroscopic and Theoretical Study of the Electronic and Geometric Structures of Undercoordinated Osmium Chloride Anions OsCln- (n = 3-5)
AU - Tang, Peng
AU - Zhang, Jian
AU - Li, Xueying
AU - Yang, Fan
AU - Zhao, Qixu
AU - Ma, Junyang
AU - Hu, Zhubin
AU - Sun, Haitao
AU - Wang, Xue Bin
AU - Sun, Zhenrong
AU - Yang, Yan
N1 - Publisher Copyright:
© 2024 American Chemical Society.
PY - 2024/7/18
Y1 - 2024/7/18
N2 - A series of anionic transition metal halides, OsCln- (n = 3-5), have been investigated using a newly developed, home-constructed, cryogenic anion cluster photoelectron spectroscopy. The target anionic species are generated through collision-induced dissociation in a two-stage ion funnel. The measured vertical detachment energies (VDEs) are 3.48, 4.54, and 4.81 eV for n = 3, 4, and 5, respectively. Density functional theory calculations at the B3LYP-D3(BJ)//aug-cc-pVTZ(-pp) level predict the lowest energy structures of the atomic form of OsCln- (n = 3-5) to be a quintet triangle, quartet square, and quintet square-based pyramid, respectively. The CCSD(T)-calculated VDEs and corresponding adiabatic detachment energies agree well with our experimental measurements. Analysis of the corresponding frontier molecular orbitals and charge density differences suggests that the d-orbitals of the transition metal Os play a primary role in the single-photon detachment processes, and the detached electrons originating from different molecular orbitals are distinguishable.
AB - A series of anionic transition metal halides, OsCln- (n = 3-5), have been investigated using a newly developed, home-constructed, cryogenic anion cluster photoelectron spectroscopy. The target anionic species are generated through collision-induced dissociation in a two-stage ion funnel. The measured vertical detachment energies (VDEs) are 3.48, 4.54, and 4.81 eV for n = 3, 4, and 5, respectively. Density functional theory calculations at the B3LYP-D3(BJ)//aug-cc-pVTZ(-pp) level predict the lowest energy structures of the atomic form of OsCln- (n = 3-5) to be a quintet triangle, quartet square, and quintet square-based pyramid, respectively. The CCSD(T)-calculated VDEs and corresponding adiabatic detachment energies agree well with our experimental measurements. Analysis of the corresponding frontier molecular orbitals and charge density differences suggests that the d-orbitals of the transition metal Os play a primary role in the single-photon detachment processes, and the detached electrons originating from different molecular orbitals are distinguishable.
UR - https://www.scopus.com/pages/publications/85197764735
U2 - 10.1021/acs.jpca.4c01713
DO - 10.1021/acs.jpca.4c01713
M3 - 文章
C2 - 38968614
AN - SCOPUS:85197764735
SN - 1089-5639
VL - 128
SP - 5500
EP - 5507
JO - Journal of Physical Chemistry A
JF - Journal of Physical Chemistry A
IS - 28
ER -