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Journal ArticleDOI

Calculated barrier to hydrogen atom abstraction from CH4 by O(3P)

Stephen P. Walch, +1 more
- 01 Mar 1980 - 
- Vol. 72, Iss: 5, pp 3221-3227
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TLDR
In this paper, the barrier height and transition state geometry for the reaction CH4+O(3P) → CH3+OH using POL-CI wave functions with a valence double zeta plus polarization basis set were calculated.
Abstract
The barrier height and transition state geometry have been calculated for the reaction CH4+O(3P) →CH3+OH using POL–CI wave functions with a valence double zeta plus polarization basis set. The saddle point geometry is found to be of C3v symmetry with the CH and OH bonds stretched by ∼0.27 A (25%) and ∼0.21 A (21%), respectively. The CH bond lengths of the CH3 group change only very slightly (<0.01 A) during the reaction, while at the transition state each CH bond is ∼13.1° out of the plane perpendicular to the CHO axis and containing the carbon atom (19.5° for CH4 and 0.0° for CH3). The calculated barrier height is 14.4 kcal/mole using a [3s2p1d/2s1p] basis set. From comparison to similiar calculations for O(3P)+H2→OH+H the basis set error in ΔEb is estimated to be ∼2.4 kcal/mole leading to a predicted barrier height of ∼12.0 kcal/mole. Including zero point corrections leads to estimated activation energies of 10.3 kcal/mole (3A′) and 10.1 kcal/mole (3A″) as compared to experimentally derived activation e...

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Citations
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Journal ArticleDOI

A density functional study of the simplest hydrogen abstraction reaction. Effect of self-interaction correction

TL;DR: In this paper, 24 different local and gradient-corrected density functional methods were used in a study of the reaction H+H2→H2+H. The results were compared to those obtained by ab initio methods and experiment.
Journal ArticleDOI

The use of transition-state theory to extrapolate rate coefficients for reactions of H atoms with alkanes

TL;DR: In this paper, the authors developed expressions for estimating structural properties of the activated complex necessary for calculating enthalpies and entropies of activation, which are consistent with the experimental data and with the calculations.
Journal ArticleDOI

Dual-level direct dynamics calculations of the reaction rates for a jahn-teller reaction : hydrogen abstraction from ch4 or cd4 by o(3p)

TL;DR: In this article, the reaction rates of O(3P + CH4 → OH + CH3 and O( 3P + CD4 → OD + CD3 over the temperature range 300−2500 K were investigated.
Journal ArticleDOI

Accurate quantum dynamics of a combustion reaction: Thermal rate constants of O(3P)+CH4(X 1A1)→OH(X 2Π)+CH3(X 2A2″)

TL;DR: In this paper, a quantum dynamics study of a polyatomic combustion reaction accurately considering all its internal degrees of freedom is presented, and the thermal rate constants for the O(3P)+CH4(X 1A1)→OH(X 2Π)+CH3(X 2A2″) reaction is calculated and compared to experimental and approximate theoretical results.
Journal ArticleDOI

Vibrational distribution of CH3 produced by the reaction of O(1D2) atom with CH4

TL;DR: In this article, the nascent vibrational distribution of CH3 produced by the reaction O(1D2)+CH4→OH+CH3 (ΔH0=−182 kJ mol−1) has been investigated by infrared diode laser kinetic spectroscopy.
References
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Journal ArticleDOI

General contraction of Gaussian atomic orbitals: Core, valence, polarization, and diffuse basis sets; Molecular integral evaluation

TL;DR: The basis is compared with standard methods in current use and is shown to be superior in terms of energy lowering obtained per additional basis function beyond a minimal number.
Journal ArticleDOI

A theoretical study of the potential energy surface for OH+H2

TL;DR: Barrier heights and transition state geometries have been calculated for the reaction OH+H2→H2O+H using large scale POLCI wave functions (based on GVB wave functions using basis sets of up to triple zeta valence plus double zeta polarization quality) as discussed by the authors.
Journal ArticleDOI

Polarization CI wavefunctions: the valence states of the NH radical

TL;DR: In this paper, the polarization configuration interaction (POL-CI) wavefunction is described and a generalized valence bond (GVB) calculation is performed to insure proper dissociation.
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