AE Favorsky Irkutsk Institute of Chemistry, Siberian Branch of the Russian Academy of Sciences, Irkutsk, Russia.
Magn Reson Chem. 2012 Oct;50(10):653-8. doi: 10.1002/mrc.3858. Epub 2012 Aug 31.
Stereochemical structure of nine Z-2-(vinylsulfanyl)ethenylselanyl organyl sulfides has been investigated by means of experimental measurements and second-order polarization propagator approach calculations of their (1)H-(1)H, (13)C-(1)H, and (77)Se-(1)H spin-spin coupling constants together with a theoretical conformational analysis performed at the MP2/6-311G** level. All nine compounds were shown to adopt the preferable skewed s-cis conformation of their terminal vinylsulfanyl group, whereas the favorable rotational conformations with respect to the internal rotations around the C-S and C-Se bonds of the internal ethenyl group are both skewed s-trans. Stereochemical trends of (77)Se-(1)H spin-spin coupling constants originating in the geometry of their coupling pathways and the selenium lone pair effect were rationalized in terms of the natural J-coupling analysis within the framework of the natural bond orbital approach.
已经通过实验测量和二阶极化传播子方法计算了 9 种 Z-2-(乙烯基硫基)乙烯基硒基有机硫醚的立体化学结构,这些化合物的 (1)H-(1)H、(13)C-(1)H 和 (77)Se-(1)H 自旋-自旋耦合常数,并在 MP2/6-311G**水平上进行了理论构象分析。所有这 9 种化合物都被证明采用了其末端乙烯基硫基的优先倾斜 s-顺式构象,而对于内部乙烯基基团的 C-S 和 C-Se 键的内部旋转,有利的旋转构象都是倾斜的 s-反式。(77)Se-(1)H 自旋-自旋耦合常数的立体化学趋势源于其耦合途径的几何形状和硒孤对效应,这是在自然键轨道方法的框架内通过自然 J 耦合分析来合理化的。