Mechanisms for the ozonolysis of ethene and propene: Reliability of quantum chemical predictions

被引:51
作者
Chan, WT [1 ]
Hamilton, IP [1 ]
机构
[1] Wilfrid Laurier Univ, Dept Chem, Waterloo, ON N2L 3C5, Canada
关键词
D O I
10.1063/1.1531104
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
Reactions of ozone with ethene and propene leading to primary ozonide (concerted and stepwise ozonolysis) or epoxide and singlet molecular oxygen (partial ozonolysis) are studied theoretically. The mechanism of concerted ozonolysis proceeds via a single transition structure which is a partial diradical. The transition structures and intermediates in the stepwise ozonolysis and partial ozonolysis mechanisms are singlet diradicals. Spin-restricted and unrestricted density functional methods are employed to calculate the structures of the closed-shell and diradical species. Although the partial diradicals exhibit moderate to pronounced instability in their RDFT and RHF solutions, RDFT is required to locate the transition structure for concerted ozonolysis. Spin projected fourth-order Moller-Plesset theory (PMP4) was used to correct the DFT energies. The calculated pre-exponential factors and activation energies for the concerted ozonolysis of ethene and propene are in good agreement with experimental values. However, the PMP4//DFT procedure incorrectly predicts the stepwise mechanism as the favored channel. UCCSD(T) predicts the concerted mechanism as the favored channel but significantly overestimates the activation energies. RCCSD(T) is found to be more accurate than UCCSD(T) for the calculation of the concerted mechanism but is not applicable to the diradical intermediates. The major difficulty in accurate prediction of the rate constant data for these reactions is the wide range of spin contamination for the reference UHF wave functions and UDFT solutions across the potential energy surface. The possibility of the partial ozonolysis mechanism being the source of epoxide observed in some experiments is discussed. (C) 2003 American Institute of Physics.
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页码:1688 / 1701
页数:14
相关论文
共 40 条
[1]  
Anglada JM, 1999, CHEM-EUR J, V5, P1809, DOI 10.1002/(SICI)1521-3765(19990604)5:6<1809::AID-CHEM1809>3.3.CO
[2]  
2-E
[3]   Gas-phase tropospheric chemistry of volatile organic compounds .1. Alkanes and alkenes [J].
Atkinson, R .
JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 1997, 26 (02) :215-290
[4]   KINETICS AND MECHANISMS OF THE GAS-PHASE REACTIONS OF OZONE WITH ORGANIC-COMPOUNDS UNDER ATMOSPHERIC CONDITIONS [J].
ATKINSON, R ;
CARTER, WPL .
CHEMICAL REVIEWS, 1984, 84 (05) :437-470
[5]  
BAILEY PS, 1978, OZONATION ORGANIC CH, V1, P23
[6]   SPIN CONTAMINATION IN DENSITY-FUNCTIONAL THEORY [J].
BAKER, J ;
SCHEINER, A ;
ANDZELM, J .
CHEMICAL PHYSICS LETTERS, 1993, 216 (3-6) :380-388
[7]   INFRARED-SPECTRA OF 16O3 AND 18O3 - DARLING AND DENNISON RESONANCE AND ANHARMONIC POTENTIAL FUNCTION OF OZONE [J].
BARBE, A ;
SECROUN, C ;
JOUVE, P .
JOURNAL OF MOLECULAR SPECTROSCOPY, 1974, 49 (02) :171-182
[8]  
Benson S.W., 1976, Thermochemical Kinetics
[9]   The importance of including dynamic electron correlation in ab initio calculations [J].
Borden, WT ;
Davidson, ER .
ACCOUNTS OF CHEMICAL RESEARCH, 1996, 29 (02) :67-75
[10]   Dissociative ring-closure in aliphatic hydroperoxyl radicals [J].
Chan, WT ;
Pritchard, HO ;
Hamilton, IP .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 1999, 1 (16) :3715-3719