4.4 Article

An appraisal of the hydrogen atom transfer mechanism for the reaction between thiourea derivatives and •OH radical: A case-study of dimethylthiourea and diethylthiourea

期刊

COMPUTATIONAL AND THEORETICAL CHEMISTRY
卷 1101, 期 -, 页码 83-95

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.comptc.2016.12.027

关键词

Thiourea derivatives; Hydrogen transfer mechanism; N-H bond dissociation enthalpy; Radical scavenger; Spin density

资金

  1. Sasol Inzalo Foundation (South Africa)
  2. South African National Research Foundation (NRF)

向作者/读者索取更多资源

Reactions between thioureas (TUs) and hydroxyl radical (center dot OH) have wide applications in electrochemical, radiation, photochemical and biological processes. TUs +center dot OH reactions have been suggested to proceed through either direct hydrogen abstraction or-OH addition pathways. Yet, the two pathways have not been elucidated. In this study, quantum theoretical approaches are utilised to investigate the hydrogen atom transfer mechanisms for the dimethylthiourea (DMTU) +center dot OH and diethylthiourea (DETU) +center dot OH reactions. The objectives of the study are to identify the preferred pathway for the reaction and elucidate the nature of the species involved in the reaction as well as to characterise them with respect to their energetic, geometric, electronic and kinetic properties. The study is performed in vacuo and in water solution by utilising DFT/omega B97X-D, DFT/BHHLYP and DFT/M06-2X methods, in conjunction with the 6-311+ +G(3df,2p) basis sets. The results of the study suggest that direct hydrogen abstraction pathway is kinetically preferred to the center dot OH addition pathway in both media. The activation energy values and the rate constant values for the center dot OH addition pathway suggest that the aqueous media plays a crucial role in determining the rate determining step for the reaction. The N-H bond dissociation enthalpy value is minimally dependent on the media. The spin density on the thiyl radical species is largely localised on the N atom with a little delocalisation onto the S and C for the results in water solution, while it is delocalised through the S-C-N region for the results in vacuo, a result which is in agreement with experimental findings. A comparison of the performance, of the calculation methods suggests that there are minimal differences in their ability to estimate geometric, electronic and energetic properties and significant differences may exist in their ability to estimate reaction rate constant. Overall, the trend in the energetic (e.g., bond dissociation enthalpy) and electronic properties (e.g., spin density distribution) for the two reactions, indicating that the radical scavenging properties of thiourea derivatives is minimally influenced by the length of the alkyl chain. (C) 2016 Elsevier B.V. All rights reserved.

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