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Theoretical Studies on the Reaction Mechanism of 1-Chloroethane with Hydroxyl Radical
Authors:WANG Bing-Xing  WANG Li
Abstract:The reaction mechanism of 1-chloroethane with hydroxyl radical has been investigated by using density functional theory (DFT) B3LYP/6-31G (d, p) method. All bond dissociation enthalpies were computed at the same theoretical level. It was found that hydrogen abstraction pathway is the most favorable. There are two hydrogen abstraction pathways with activation barriers of 0.630 and 4.988 kJ/mol, respectively, while chlorine abstraction pathway was not found. It was observed that activation energies have a more reasonable correlation with the reaction enthalpy changes (ΔHr) than with bond dissociation enthalpies (BDE).
Keywords:bond dissociation enthalpies  B3LYP  1-chloroethane  hydroxyl radical  reaction mechanism  Hydroxyl Radical  Reaction Mechanism  Studies  reasonable  correlation  reaction mechanism  enthalpy  changes  chlorine  activation  barriers  hydrogen  abstraction  pathway  bond  dissociation  computed  theoretical  level  method
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