引用本文:
Shi Wen Yu, Tao Hong Li, Xiao Mei Yang, Li Qing Yin, Li Feng Yao, Xiao Guang Xie. Theoretical study on the reaction of NbS+(3∑-,1Γ) with CO[J]. Chinese Chemical Letters,
2009, 20(6): 755-758.
doi:
10.1016/j.cclet.2009.02.002
Citation: Shi Wen Yu, Tao Hong Li, Xiao Mei Yang, Li Qing Yin, Li Feng Yao, Xiao Guang Xie. Theoretical study on the reaction of NbS+(3∑-,1Γ) with CO[J]. Chinese Chemical Letters, 2009, 20(6): 755-758. doi: 10.1016/j.cclet.2009.02.002
Citation: Shi Wen Yu, Tao Hong Li, Xiao Mei Yang, Li Qing Yin, Li Feng Yao, Xiao Guang Xie. Theoretical study on the reaction of NbS+(3∑-,1Γ) with CO[J]. Chinese Chemical Letters, 2009, 20(6): 755-758. doi: 10.1016/j.cclet.2009.02.002
Theoretical study on the reaction of NbS+(3∑-,1Γ) with CO
摘要:
Two possible reactions of NbS+ (3∑-, 1Γ) with CO in the gas phase have been studied by using B3LYP and CCSD(T) methods:the O/S exchange reaction (NbS++CO→ NbO++CS) and the S-transfer reaction (NbS++CO →Nb++COS). The two reactions have a one-step mechanism. The barriers of the O/S exchange reaction on the triplet and singlet surfaces are 51.2 and 52.4 kcal/mol,respectively, and the barriers of the S-transfer reaction are 58.3 and 78.0 kcal/mol, respectively. The results indicate that the Stransfer and the O/S exchange reaction of the 3∑- ground state of NbS+ are competing, but, for the S-transfer reaction, the 1G exited state is more reactive. The differences between the reactions of NbS+ (3∑-, 1Γ) and VS+ (3∑-, 1Γ) are discussed.
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关键词:
- Niobium sulfide cation
- / CO
- / Reaction
- / CCSD(T)
English
Theoretical study on the reaction of NbS+(3∑-,1Γ) with CO
Abstract:
Two possible reactions of NbS+ (3∑-, 1Γ) with CO in the gas phase have been studied by using B3LYP and CCSD(T) methods:the O/S exchange reaction (NbS++CO→ NbO++CS) and the S-transfer reaction (NbS++CO →Nb++COS). The two reactions have a one-step mechanism. The barriers of the O/S exchange reaction on the triplet and singlet surfaces are 51.2 and 52.4 kcal/mol,respectively, and the barriers of the S-transfer reaction are 58.3 and 78.0 kcal/mol, respectively. The results indicate that the Stransfer and the O/S exchange reaction of the 3∑- ground state of NbS+ are competing, but, for the S-transfer reaction, the 1G exited state is more reactive. The differences between the reactions of NbS+ (3∑-, 1Γ) and VS+ (3∑-, 1Γ) are discussed.
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Key words:
- Niobium sulfide cation
- / CO
- / Reaction
- / CCSD(T)
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