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Experimental and theoretical multiple kinetic isotope effects for an SN2 reaction. An attempt to determine transition-state structure and the ability of theoretical methods to predict experimental kinetic isotope effects
Authors:Fang Yao-Ren  Gao Ying  Ryberg Per  Eriksson Jonas  Kołodziejska-Huben Magdalena  Dybała-Defratyka Agnieszka  Madhavan S  Danielsson Rolf  Paneth Piotr  Matsson Olle  Westaway Kenneth Charles
Institution:Department of Chemistry and Biochemistry, Laurentian University Sudbury, Ontario P3E 2C6, Canada.
Abstract:The secondary alpha-deuterium, the secondary beta-deuterium, the chlorine leaving-group, the nucleophile secondary nitrogen, the nucleophile (12)C/(13)C carbon, and the (11)C/(14)C alpha-carbon kinetic isotope effects (KIEs) and activation parameters have been measured for the S(N)2 reaction between tetrabutylammonium cyanide and ethyl chloride in DMSO at 30 degrees C. Then, thirty-nine readily available different theoretical methods, both including and excluding solvent, were used to calculate the structure of the transition state, the activation energy, and the kinetic isotope effects for the reaction. A comparison of the experimental and theoretical results by using semiempirical, ab initio, and density functional theory methods has shown that the density functional methods are most successful in calculating the experimental isotope effects. With two exceptions, including solvent in the calculation does not improve the fit with the experimental KIEs. Finally, none of the transition states and force constants obtained from the theoretical methods was able to predict all six of the KIEs found by experiment. Moreover, none of the calculated transition structures, which are all early and loose, agree with the late (product-like) transition-state structure suggested by interpreting the experimental KIEs.
Keywords:ab initio calculations  density functional calculations  isotope effects  nucleophilic substitution  semiempirical calculations  transition states
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