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The influence of a single water molecule on the reaction of BrO + HO2.


ABSTRACT: The influence of a single water molecule on the BrO + HO2 hydrogen extraction reaction has been explored by taking advantage of CCSD(T)/aug-cc-pVTZ//B3LYP/6-311 +  + G(d,p) method. The reaction in the absence of water have two distinct kinds of H-extraction channels to generate HOBr + O2 (1Δg) and HBr + O3, and the channel of generation of HOBr + O2 (1Δg) dominated the BrO + HO2 reaction. The rate coefficient of the most feasible channel for the BrO + HO2 reaction in the absence of water is estimated to be 1.44 × 10-11 cm3 molecule-1 s-1 at 298.15 K, which is consistent with the experiment. The introduction of water made the reaction more complex, but the products are unchanged. Four distinct channels, beginning with HO2H2O with BrO, H2OHO2 with BrO, BrOH2O with HO2, H2OBrO with HO2 are researched. The most feasible channels, stemming from H2OHO2 with BrO, and BrOH2O with HO2, are much slower than the reaction of BrO + HO2 without water, respectively. Thus, the existence of water molecule takes a negative catalytic role for BrO + HO2 reaction.

SUBMITTER: Zhang P 

PROVIDER: S-EPMC10415307 | biostudies-literature | 2023 Aug

REPOSITORIES: biostudies-literature

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The influence of a single water molecule on the reaction of BrO + HO<sub>2</sub>.

Zhang Peng P   Ma Lu L   Zhao Meilian M   Sun Yuxi Y   Chen Wanping W   Zhang Yunju Y  

Scientific reports 20230810 1


The influence of a single water molecule on the BrO + HO<sub>2</sub> hydrogen extraction reaction has been explored by taking advantage of CCSD(T)/aug-cc-pVTZ//B3LYP/6-311 +  + G(d,p) method. The reaction in the absence of water have two distinct kinds of H-extraction channels to generate HOBr + O<sub>2</sub> (<sup>1</sup>Δ<sub>g</sub>) and HBr + O<sub>3</sub>, and the channel of generation of HOBr + O<sub>2</sub> (<sup>1</sup>Δ<sub>g</sub>) dominated the BrO + HO<sub>2</sub> reaction. The rate  ...[more]

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