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Thermodynamic and kinetic studies of hydroxyl radical reaction with bromine oxide using density functional theory

โœ Scribed by Mohamad Akbar Ali; B. Rajakumar


Book ID
104016786
Publisher
Elsevier
Year
2011
Tongue
English
Weight
640 KB
Volume
964
Category
Article
ISSN
2210-271X

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โœฆ Synopsis


Thermodynamic properties such as enthalpies, Gibb's free energies, entropies of BrO + OH reaction and rate coefficients were computed using density functional theory, viz. B3LYP/6-311G(2df,2pd) and mPW1PW91/6-311G(2df, 2pd) level of theories. Geometries of reactants, intermediates, transitions states and products were optimized using these theories. Twelve different transitions states were identified using both the theories and confirmed by intrinsic reaction coordinate (IRC) calculations. Reaction mechanism of BrO + OH was explored using two reaction paths namely channel 1 (producing HO 2 + Br) and channel 2 (producing HBr + O 2 ).

Reaction channel 2 is found to be four times faster than reaction channel 1. The rate coefficient for the title reaction was computed to be k = (1.81 ยฑ 0.17) ร‚ 10 ร€13 [exp (1532 ยฑ 25)/T] cm 3 molecule ร€1 s ร€1 in the temperature range of 200 and 400 K using B3LYP/6-311G(2df,2pd) level of theory. Theoretically computed enthalpy of the reaction and rate coefficients using B3LYP/6-311G(2df,2pd) level of theory were found to be in good agreement with the experimentally measured ones.


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