Femtosecond dynamics of the methane-methanol and benzene-phenol conversions by an iron-oxo species

被引:40
作者
Yoshizawa, K [1 ]
Shiota, Y
Kagawa, Y
Yamabe, T
机构
[1] Kyoto Univ, Dept Mol Engn, Sakyo Ku, Kyoto 6068501, Japan
[2] Inst Fundamental Chem, Sakyo Ku, Kyoto 6068103, Japan
关键词
D O I
10.1021/jp992464t
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
Femtosecond dynamic behavior of the methane-methanol conversion by the bare iron-ore complex (FeO+) is presented using the B3LYP density-functional-theory (DFT) method. We propose that the reaction pathway for the direct methane-methanol conversion is partitioned into the H atom abstraction via a four-centered transition state and the methyl migration via a three-centered transition state. It is demonstrated that both the H atom abstraction and the methyl migration occur in a concerted manner in a time scale of 100 fs. The concerted H atom abstraction and the direct H atom abstraction via a transition state with a linear C-H-O(Fe) array are compared. The direct H atom abstraction of methane is predicted to occur in a time scale of 50 fs. Isotope effects on the concerted and the direct H(D) atom abstractions are also computed and analyzed in the FeO+/methane system. Predicted values of the kinetic isotope effect (k(H)/k(D)) for the H(D) atom abstraction of methane are 9 in the concerted mechanism and 16 in the direct abstraction mechanism at 300 K. Dynamics calculations are also carried out on the benzene-phenol conversion by the FeO+ complex. The general profile of the electronic process of the benzene-phenol conversion is identical to that of the methane-methanol conversion with respect to essential bonding characters. It is demonstrated that the concerted H atom abstraction and the phenyl migration require 200 and 100 fs to be completed, respectively, in the FeO+/benzene system.
引用
收藏
页码:2552 / 2561
页数:10
相关论文
共 52 条
[41]   Mechanism of C-H activation by diiron methane monooxygenases: Quantum chemical studies [J].
Siegbahn, PEM ;
Crabtree, RH .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1997, 119 (13) :3103-3113
[42]   Heme-containing oxygenases [J].
Sono, M ;
Roach, MP ;
Coulter, ED ;
Dawson, JH .
CHEMICAL REVIEWS, 1996, 96 (07) :2841-2887
[43]   DYNAMIC REACTION COORDINATE ANALYSIS - AN APPLICATION TO SIH4+H--]SIH5- [J].
TAKETSUGU, T ;
GORDON, MS .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (21) :8462-8471
[44]   COMPUTER EXPERIMENTS ON CLASSICAL FLUIDS .I. THERMODYNAMICAL PROPERTIES OF LENNARD-JONES MOLECULES [J].
VERLET, L .
PHYSICAL REVIEW, 1967, 159 (01) :98-+
[45]   ACCURATE SPIN-DEPENDENT ELECTRON LIQUID CORRELATION ENERGIES FOR LOCAL SPIN-DENSITY CALCULATIONS - A CRITICAL ANALYSIS [J].
VOSKO, SH ;
WILK, L ;
NUSAIR, M .
CANADIAN JOURNAL OF PHYSICS, 1980, 58 (08) :1200-1211
[46]   Dioxygen activation by enzymes containing binuclear non-heme iron clusters [J].
Wallar, BJ ;
Lipscomb, JD .
CHEMICAL REVIEWS, 1996, 96 (07) :2625-2657
[47]   Substrate binding and C-H bond activation in the soluble methane monooxygenase hydroxylase [J].
Whittington, DA ;
Valentine, AM ;
Lippard, SJ .
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 1998, 3 (03) :307-313
[48]   Intrinsic reaction coordinate analysis of the conversion of methane to methanol by an iron-oxo species: A study of crossing seams of potential energy surfaces [J].
Yoshizawa, K ;
Shiota, Y ;
Yamabe, T .
JOURNAL OF CHEMICAL PHYSICS, 1999, 111 (02) :538-545
[49]   Reaction pathway for the direct benzene hydroxylation by iron-ore species [J].
Yoshizawa, K ;
Shiota, Y ;
Yamabe, T .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1999, 121 (01) :147-153
[50]   Two-step concerted mechanism for alkane hydroxylation on the ferryl active site of methane monooxygenase [J].
Yoshizawa, K .
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 1998, 3 (03) :318-324