A detailed experimental and theoretical study on the decomposition of methoxy radicals

被引:59
作者
Hippler, H [1 ]
Striebel, F [1 ]
Viskolcz, B [1 ]
机构
[1] Univ Karlsruhe, Inst Phys Chem, Lehrstuhl Mol Phys Chem, D-76128 Karlsruhe, Germany
关键词
D O I
10.1039/b101376i
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
We present a detailed experimental and theoretical study on the pressure and temperature dependence of the rare constant for the thermal unimolecular decomposition of methoxy radicals, according to CH3O + M --> CH2O + H + M. Experimentally, we studied the decomposition of the methoxy radical at temperatures between 680 and 810 K and pressures ranging from 1 to 90 bar helium. The methoxy radicals have been generated by laser flash photolysis of methylbenzoate [C6H5C(O)OCH3] at 193 nm and detected by laser-induced fluorescence. Additionally, we characterized the important features of the potential energy surface by ab initio calculations. The results of these calculations were used to analyze the thermal rate constant applying both the Tree formalism as well as a master equation approach. The following falloff parameters have been extracted: k(1,infinity) = 6.8 x 10(13) exp(-109.5 kJ mol(-1)/RT) s(-1), k(1.0) = [He] 1.9 x 10(-8)(T/1000 K)(-2.)4 exp(-101.7 kJ mol(-1)/RT) cm(3) s(-1) and F-C(He) = 0.715-T/4340 K. Additionally, we reanalyzed the literature data for N-2 as bath gas and we recommend the following falloff parameters for this: k(1.0) = [N-2] 3.1 x 10(-8)(T/1000 K)(-3.0) exp(-101.7 kJ mol(-1)/RT) cm(3) s(-1) and F-C(N-2) = 0.97-T/1950 K. In contradiction to earlier studies we did not find any indications that tunneling markedly contributes to the thermal rate constant under our experimental conditions. We calculated the specific and the high-pressure limiting rate constants using RRKM theory and obtained satisfactory agreement with experimental results. We attribute the strong fluctuations of the specific rate constants to be essentially caused by the properties of the density of states. For the beta C-H scission reactions in alkoxy radicals we suggest for the high-pressure limiting rate constants a common A factor and activation energy of A = 10(13.8+/-0.3) s(-1) and E-a = 94 +/- 6 kJ mol(-1). Consequently, the reverse reactions, i.e. the H-atom additions to the carbon site of the C=O pi bond in aldehydes and ketones, always compete with the direct H-atom abstraction.
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页码:2450 / 2458
页数:9
相关论文
共 45 条
[1]  
AHLRICHS R, COMMUNICATION
[2]   UNIMOLECULAR PROCESSES IN VIBRATIONALLY HIGHLY EXCITED CYCLOHEPTATRIENES .1. THERMAL-ISOMERIZATION IN SHOCK-WAVES [J].
ASTHOLZ, DC ;
TROE, J ;
WIETERS, W .
JOURNAL OF CHEMICAL PHYSICS, 1979, 70 (11) :5107-5116
[3]   DENSITY-FUNCTIONAL THERMOCHEMISTRY .3. THE ROLE OF EXACT EXCHANGE [J].
BECKE, AD .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (07) :5648-5652
[4]   NUMBER OF MULTIPLY-RESTRICTED PARTITIONS [J].
BEYER, T ;
SWINEHART, DF .
COMMUNICATIONS OF THE ACM, 1973, 16 (06) :379-379
[5]  
Caralp F, 1999, PHYS CHEM CHEM PHYS, V1, P2935
[6]  
CHOUNDHURY TK, 1989, J PHYS CHEM-US, V94, P2394
[7]   Rotation-vibration state-resolved unimolecular dynamics of highly excited CH3O ((X)over-tilde(2)E) .3. State-specific dissociation rates from spectroscopic line profiles and time-resolved measurements [J].
Dertinger, S ;
Geers, A ;
Kappert, J ;
Wiebrecht, J ;
Temps, F .
FARADAY DISCUSSIONS, 1995, 102 :31-52
[8]   Complete falloff curves for the unimolecular decomposition of i-propoxy radicals between 330 and 408 K [J].
Devolder, P ;
Fittschen, C ;
Frenzel, A ;
Hippler, H ;
Poskrebyshev, G ;
Striebel, F ;
Viskolcz, B .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 1999, 1 (04) :675-681
[9]   WEAK COLLISION EFFECTS IN THE REACTION C2H5-REVERSIBLE-ARROW-C2H4+H [J].
FENG, Y ;
NIIRANEN, JT ;
BENCSURA, A ;
KNYAZEV, VD ;
GUTMAN, D ;
TSANG, W .
JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (04) :871-880
[10]   The β C-C bond scission in alkoxy radicals:: thermal unimolecular decomposition of t-butoxy radicals [J].
Fittschen, C ;
Hippler, H ;
Viskolcz, B .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2000, 2 (08) :1677-1683