Issue 11, 2000

Equilibria of simple thioenol/thiocarbonyl pairs. Comparison with the oxygen analogs and with the parent selenium and tellurium systems. A theoretical study  1

Abstract

Thiocarbonylthioenol and carbonylenol equilibria (CH3C([double bond, length half m-dash]X)R ⇌ H2C[double bond, length half m-dash]C(XH)R, X = S, O) were calculated by high level ab initio and density functional quantum mechanical methods for R = H, Me, Et, i-Pr, i-Bu, t-Bu, SiH3, CN, Ph, CH2Y (Y = Ph, CN, CF3, CH[double bond, length half m-dash]CH2), cyclic (CH2)nC[double bond, length half m-dash]X, n = 4–6, (PhCH2)2C[double bond, length half m-dash]S, PhCH2C([double bond, length half m-dash]S)CHPh2 and i-Bu2C[double bond, length half m-dash]S. A detailed study when R = H, Me shows that B3LYP/6-31G(d,p) overestimates ΔH(thiocarbonyl–thioenol) by ca. 2 kcal mol−1. Isodesmic equations are used to evaluate separately the effect of R on each of the four species. A good agreement exists between the theoretical and the available experimental values. The ΔH(thiocarbonyl–thioenol) values of ca. −5.5 to 8 kcal mol−1 are much smaller than the ΔH(carbonyl–enol) values of ca. 5–17 kcal mol−1. A correlation exists between the ΔH terms of the two series. For R = H, Me the ΔH(CH3C([double bond, length half m-dash]X)R − CH2[double bond, length half m-dash] C(XH)R) values at the B3LYP/6-31G(d,p) level decrease as X is changed to a heavier chalcogen; e.g., when R = Me, ΔH = 14.9 (X = O), 6.1 (X = S), 1.7 (X = Se), −0.2 (est., X = Te).

Supplementary files

Article information

Article type
Paper
Submitted
30 May 2000
Accepted
10 Aug 2000
First published
12 Oct 2000

J. Chem. Soc., Perkin Trans. 2, 2000, 2269-2279

Equilibria of simple thioenol/thiocarbonyl pairs. Comparison with the oxygen analogs and with the parent selenium and tellurium systems. A theoretical study

S. Sklenak, Y. Apeloig and Z. Rappoport, J. Chem. Soc., Perkin Trans. 2, 2000, 2269 DOI: 10.1039/B004289G

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