Department of Organic Chemistry, Centre of Molecular and Macromolecular Studies Polish Academy of Sciences, Sienkiewicza 112, 90-363 Łódź, Poland.
Department of Structural Chemistry, Centre of Molecular and Macromolecular Studies Polish Academy of Sciences, Sienkiewicza 112, 90-363 Łódź, Poland.
Molecules. 2022 Jan 18;27(3):599. doi: 10.3390/molecules27030599.
The mechanisms of three selected identity substitution reactions at phosphorus and sulfur occurring with stereospecific inversion have been investigated using density functional theory (DFT). The first identity reaction between methoxyl anion and methyl ethylphenylphosphinate reported in 1963 has been shown to proceed in a stepwise fashion according to the addition-elimination (A-E) mechanism involving formation of a pentacoordinate phosphorus intermediate (TBI-). In contrast, the results of DFT studies of the identity chloride exchange reaction in (ethoxy)ethylphosphonochloridothionate in acetone solution provided evidence that it proceeds synchronously according to the classical Ingold's S2-P mechanism. DFT calculations of the methoxyl-methoxy exchange reaction at sulfur in methyl -toluenesulfinate catalyzed by trifluoroacetic acid in methanol revealed that it proceeds stepwise (A-E mechanism), involving the formation of the high-coordinate sulfurane intermediate. In both identity transesterification reactions, and , the transiently formed trigonal bipyramidal intermediates with the two methoxyl groups occupying apical positions (TBI- and TBI-) have higher free energy barriers for the Berry-type pseudorotation than those for direct decomposition to starting phosphinate and sulfinate ensuring stereospecific inversion of configuration at the phosphinyl and sulfinyl centers. Thus, the DFT method proved its usefulness in the distinction between both mechanisms that are often indistinguishable by kinetic measurements.
使用密度泛函理论(DFT)研究了在磷和硫上发生立体特异性反转的三种选定的取代反应的机制。1963 年报道的甲氧基阴离子与甲基乙基苯基膦酸酯之间的第一个取代反应被证明是按照涉及五配位磷中间体(TBI-)形成的加成-消除(A-E)机制逐步进行的。相比之下,在丙酮溶液中(乙氧基)乙基膦酰氯代硫代硫酸盐的等价氯交换反应的 DFT 研究结果提供了证据,表明它根据经典的 Ingold S2-P 机制同步进行。在三氟乙酸催化的甲醇中,-甲苯亚磺酸钠上的硫的甲氧基-甲氧基交换反应的 DFT 计算表明,它是分步进行的(A-E 机制),涉及高配位的硫烷中间体的形成。在两种等价的酯交换反应,和,瞬态形成的具有两个甲氧基基团占据顶点位置的三角双锥中间体(TBI-和 TBI-)具有比直接分解为起始膦酸酯和亚磺酸盐更高的 Berry 型拟反转的自由能垒,确保了磷酰基和砜基中心构型的立体特异性反转。因此,DFT 方法证明了其在区分经常通过动力学测量无法区分的两种机制方面的有用性。