Computational study on the thermal decomposition and isomerization of the CH 3 OCF 2 O • radical (original) (raw)

Ab Initio Study on the Thermal Decomposition of CH3CF2O Radical

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Bulletin of the Korean Chemical Society, 2009

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A computational perspective of the competitive decomposition and isomerization of CH_3OCHFO radical

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Theoretical Investigation of the Hydrogen Abstraction Reaction of the OH Radical with CH 3 CHF 2 (HFC152-a): A Dual Level Direct Density Functional Theory Dynamics Study

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Theoretical studies on decomposition kinetics of CF3CF2O radical

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Kinetics, mechanism and thermochemistry of the gas phase reactions of CF3CH2OCH2CF3 with OH radicals: A theoretical study

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An Ab initio study of the structure and energetics of HONF2 and .ONF2

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Rate coefficients for the reaction of OH with CF3CH2CH3 (HFC-263fb) between 200 and 400 K: Ab initio, DFT, and transition state theory calculations

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Density Functional Theory Is More Accurate Than Coupled-Cluster Theory in the Study of the Thermochemistry of Species Containing the F−O Bond

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Computational study on decomposition kinetics of CH 3 CFClO radical

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A DFT study on kinetics of the gas phase reactions of CH3CH2OCF3 with OH radicals and Cl atoms

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Theoretical studies of decomposition kinetics of CF3CCl2O radical

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Theoretical investigations on kinetics, mechanism and thermochemistry of the gas phase reactions of CHF2OCF2CHF2 with OH radicals

Makroni Lily

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Theoretical studies on kinetics, mechanism and thermochemistry of gas-phase reactions of CF3CHFCF2OCF3 with OH radicals and Cl atoms and fate of alkoxy radical at 298K

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Kinetics of the reactions of FC(O)O2 radicals with F atoms and F2

Carlos J Cobos

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Robert Squires

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Rate Coefficients of the Cl + CH 3 C(O)OCH 3 → HCl + CH 3 C(O)OCH 2 Reaction at Different Temperatures Calculated by Transition-State Theory with ab Initio and Density Functional Theory Reaction Paths

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Canonical Variational Transition-State Theory Study of the CF3CHFCH2F + OH Reaction

Adrian Varela-Alvarez

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Computation of electron affinities of O and F atoms, and energy profile of F–H2 reaction by density functional theory and ab initio methods

Branko Jursic

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