1,4- vs 1,3-Prototropic Mechanism for Intramolecular Double Proton Transfer Reaction in Monothiooxalic Acid. Theoretical Investigation of Potential Energy Surface - Archive ouverte HAL Accéder directement au contenu
Article Dans Une Revue Journal of Physical Chemistry A Année : 2005

1,4- vs 1,3-Prototropic Mechanism for Intramolecular Double Proton Transfer Reaction in Monothiooxalic Acid. Theoretical Investigation of Potential Energy Surface

Résumé

Proton transfer is a very common and important chemical step in many systems. Despite its apparent simplicity, a correct description of this chemical process is difficult from a theoretical point of view. It requires a correct and simultaneous description of a bond breaking and a bond formation. The situation is even much more complicated when two protons are implied. This is the case for monothiooxalic acid, for which two different types (1,3- and 1,4-prototropy) of proton transfers can be invoked. A further problem is the type of the reaction (concerted or not). This paper reports a complete investigation of the potential energy surfaces: characterization of equilibrium points and transitions states. The main conclusion is: the 1,4-prototropic mechanism, mainly considered as a one step concerted exchange of protons, is the most favored from an energetic point of view.

Dates et versions

hal-00431282 , version 1 (11-11-2009)

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Christophe Raynaud, Jean-Pierre Daudey, Laurent Maron, Franck Jolibois. 1,4- vs 1,3-Prototropic Mechanism for Intramolecular Double Proton Transfer Reaction in Monothiooxalic Acid. Theoretical Investigation of Potential Energy Surface. Journal of Physical Chemistry A, 2005, 109 (42), pp.9646-9652. ⟨10.1021/jp052782u⟩. ⟨hal-00431282⟩
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