Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5417358 | Journal of Molecular Structure: THEOCHEM | 2009 | 7 Pages |
Abstract
The reaction of ground state Y with propyne has been investigated using DFT methods. It was found that H2 elimination more likely proceeds via initial methyl C-H bond activation followed by the activation of another methyl C-H bond or α-C-H bond. The concerted H2-elimination pathways were found to be barrierless, whereas the stepwise pathways have notable activation barriers. Three isomers, Y(HCCCH), Y(CCCH2) and Y-CCCH2 were identified for the experimentally observed H2-elimination product YC3H2. For the elimination of CH3, a new pathway was identified. This pathway can be described as: Ï-complex â TS â HY(CH2CCH) â TS â (CH2)-HY-(CCH) â TS â H3C-Y-CCH â CH3 + YC2H. This novel mechanism can also rationalize the formation of CH3 + YC2H in the reaction of Y with allene. The previously proposed direct sp-sp3 C-C bond insertion mechanism was also confirmed, but this pathway is energetically less favorable.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Tao Hong Li, Chuan Ming Wang, Shi Wen Yu, Xiang Yi Liu, Hui Fu, Xiao Guang Xie,