Theoretical study on the mechanism of the reaction of CH4+MgO


Autoria(s): Hu, CW; Yang, HQ; Wong, NB; Chen, YQ; Gong, MC; Tian, AM; Li, C; Li, WK
Data(s)

03/04/2003

Resumo

The reactions of (1) CH4 + MgO --> MgOH. + CH3. and (2) CH4 + MgO --> Mg + CH3OH have been studied on the singlet spin state potential energy surface at the MP2/6-311+G(2d,2p) level. These two reaction channels, both involving intermediates and transition states, have been rationalized by the structures of the species involved, natural bond orbital (NBO), and vibrational frequency analysis. We have considered two initial interacting models between CH4 and MgO: a collinear C-H approach to the O end of the MgO forming the MgOCH4 complex with C-3nu symmetry and three hydrogen atoms of the methane point to the Mg end of the MgO forming the OMgCH4 complex with C-1 symmetry. The calculations predict that reactions 1 and 2 are exothermic by 39.8 and 86.5 kJ mol(-1), respectively. Also, the former reaction proceeds more easily than the latter, and the complex HOMgCH3 is energetically preferred in the reaction of MgO + CH4.

Identificador

http://159.226.238.44/handle/321008/82923

http://www.irgrid.ac.cn/handle/1471x/138597

Idioma(s)

英语

Fonte

Chang-Wei Hu;Hua-Qing Yang;Ning-Bew Wong;Yao-Qiang Chen;Mao-Chu Gong;An-Min Tian;李灿;and Wai-Kee Li.Theoretical study on the Mechanism of the Reaction of CH4+MgO,Journal of Physical Chemistry A,2003,107():2316-2323

Tipo

期刊论文