Department of Chemistry, Federal University of Lavras, CP 3037, 37200-000, Lavras, MG, Brazil.
J Phys Chem A. 2011 Sep 8;115(35):10122-7. doi: 10.1021/jp206136t. Epub 2011 Aug 5.
Suitable (3)J(H,H) coupling constants and theoretical calculations were used to define the conformational preferences of trans-2-bromoalkoxycyclohexanes (alkoxy = OMe, OEt, O(i)Pr, and O(t)Bu) for the isolated molecule and as a function of the medium. The diaxial conformer was preponderant, or at least similarly populated to the diequatorial form, for the tert-butoxy derivative only, while the diequatorial conformer was prevalent for the remaining alkoxy derivatives (except for the OMe derivative in CCl(4) solution). The conformational behavior of these compounds was analyzed on the basis of classical steric effects and attractive electron delocalizations, by means of natural bond orbital analysis.
合适的 (3)J(H,H) 耦合常数和理论计算被用于定义反式-2-溴烷氧基环己烷(烷氧基 = OMe、OEt、O(i)Pr 和 O(t)Bu)在孤立分子中和作为介质函数的构象偏好。仅叔丁氧基衍生物以优势或至少与反式-赤道形式相当的比例存在,而其余烷氧基衍生物则以赤道形式为主(CCl(4)溶液中的 OMe 衍生物除外)。这些化合物的构象行为是基于经典的空间位阻效应和吸引力电子离域,通过自然键轨道分析来分析的。