Theoretical investigation on mechanism and kinetics of the Cl-initiated hydrogen abstraction reactions of ethyl trifluoroacetate at 298 K

被引:0
作者
Bhupesh Kumar Mishra
Hari Ji Singh
Laxmi Tiwari
机构
[1] Tezpur University,Department of Chemical Sciences
[2] D.D.U. Gorakhpur University,Department of Chemistry
来源
Journal of Molecular Modeling | 2014年 / 20卷
关键词
Fluoroester; Hydrogen abstraction; Conformer; Canonical transition state theory; Atmospheric lifetime;
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摘要
Theoretical investigations were carried out on the gas-phase reactions of CF3C(O)OCH2CH3, ethyl trifluoroacetate (ETFA) with Cl atoms by means of modern density functional theory methods. The optimized geometries, frequencies and minimum energy path were obtained with the hybrid density functional model MPWB1K using the 6-31+G(d,p) basis set. The single point energy calculations were refined further using the G2(MP2) method. Two conformers relatively close in energy were identified for ETFA; both are likely to be important in the temperature range of our study. The existence of transition states on the corresponding potential energy surface was ascertained by performing intrinsic reaction coordinate calculations. The rate constant at 298 K calculated theoretically using canonical transition state theory was found to be in good agreement with experimentally measured values. Our calculations suggest that H abstraction from the –CH2 group is kinetically and thermodynamically more favorable than abstraction from the –CH3 group. The atmospheric lifetime of ETFA with Cl atoms was determined to be 1.98 years. To the best of our knowledge, this work represents the first determination of the rate coefficients for the gas-phase reaction of chlorine atoms in ETFA.
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共 172 条
[1]  
Tsai WT(2005)undefined J Hazard Mater 119 69-78
[2]  
Sekiya A(2000)undefined J Fluorine Chem 101 215-221
[3]  
Misaki S(2002)undefined J Fluor Chem 114 237-250
[4]  
Powell RL(2011)undefined Phys Chem Chem Phys 13 17185-17193
[5]  
Bravo I(2000)undefined Environ Sci Technol 34 2973-2978
[6]  
Dıaz-de-Mera Y(2001)undefined Environ Sci Technol 35 114-120
[7]  
Aranda A(1997)undefined J Phys Chem A 101 8264-8274
[8]  
Moreno E(2004)undefined Int J Chem Kinet 36 337-344
[9]  
Nutt DR(2009)undefined Chem Phys Lett 479 20-24
[10]  
Marston G(2006)undefined Chem Phys Lett 428 42-48