Theoretical study of two-state reactivity of transition metal cations: The "difficult" case of iron ion interacting with water, ammonia, and methane

被引:114
作者
Chiodo, S
Kondakova, O
Michelini, MD
Russo, N [1 ]
Sicilia, E
Irigoras, A
Ugalde, JM
机构
[1] Univ Calabria, Dipartimento Chim, I-87030 Arcavacata Di Rende, Italy
[2] Univ Calabria, Ctr Calcolo Alte Prestazioni Elaborazioni Paralle, Ctr Eccellenza MURST, I-87030 Arcavacata Di Rende, Italy
[3] Mondragon Unibertsitatea, Humanitate Hezkuntza Zientzien Fak, Eskoriatza 20540, Euskadi, Spain
[4] Euskal Herriko Unibertsitatea, Kimika Fak, Donostia San Sebastian 20080, Euskadi, Spain
关键词
D O I
10.1021/jp036558l
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The potential energy surfaces corresponding to the dehydrogenation reaction of H2O, NH3, and CH4 molecules by Fe+(D-6, F-4) cation have been investigated in the framework of the density functional theory in its B3LYP formulation and employing a new optimized basis set for iron. In all cases, the low-spin ion-dipole complex, which is the most stable species on the respective potential energy hypersurfaces, is initially formed. In the second step, a hydrogen shift process leads to the formation of the insertion products, which are more stable in a low-spin state. From these intermediates, three dissociation channels have been considered. All of the results have been compared with existing experimental and theoretical data. Results show that the three insertion pathways are significantly different, although spin crossings between high- and low-spin surfaces are observed in all cases. The topological analysis of the electron localization function has been used to characterize the nature of the bonds for all of the minima and transition states along the paths.
引用
收藏
页码:1069 / 1081
页数:13
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