Davis Wade L, Muller Alfred
Department of Chemical Sciences, University of Johannesburg (APK Campus), PO Box 524, Auckland Park, Johannesburg, 2006, South Africa.
Acta Crystallogr C Struct Chem. 2019 Sep 1;75(Pt 9):1310-1318. doi: 10.1107/S2053229619011574. Epub 2019 Aug 28.
The crystal structures of SeP(o-tol)R, where o-tol is ortho-tolyl (2-methylphenyl) and R is Ph (phenyl), namely (2-methylphenyl)diphenylphosphane selenide, CHPSe, or Cy (cyclohexyl), namely dicyclohexyl(2-methylphenyl)phosphane selenide, CHPSe, were determined to aid in the evaluation of the steric and electronic behaviour of these analogous phosphane compounds. The compounds crystallized in similar monoclinic crystal systems, but are differentiated in their unit cells by a doubling of the number of independent molecules for R = Cy (Z' = 2) and the choice of glide plane by convention. The preferred orientation for the o-tolyl substituent obtained from the X-ray structural analysis is gauche for R = Ph and anti for R = Cy (using the Se-P-C-C torsion angles as reference). Density functional theory (DFT) calculations showed both conformations to be equally probable and indicate that the preferred solid-state conformer is probably due to the minimization of repulsion energies, resulting in a packing arrangement primarily featuring weak C-H...Se interactions and additional C-H...π interactions in the R = Ph structure. A detailed electronic and steric analysis was conducted on both phosphanes using Se-P bond lengths, multinuclear NMR J coupling constants, theoretical topological evaluation and crystallographic and solid-angle calculations, and compared to selected literature examples. The results indicate that the use of the o-tolyl substituent increases both the electron-donating capability and the steric size, but is also dependent on whether the o-tolyl group adopts a gauche or anti conformation. The single-crystal geometrical data are unable to detect electronic differences between these two structures due to the somewhat large displacement parameters observed for the Se atom in the R = Cy structure.
测定了SeP(o - tol)R的晶体结构,其中o - tol为邻甲苯基(2 - 甲基苯基),R为Ph(苯基),即(2 - 甲基苯基)二苯基膦硒化物,CHPSe,或Cy(环己基),即二环己基(2 - 甲基苯基)膦硒化物,CHPSe,以帮助评估这些类似膦化合物的空间和电子行为。这些化合物在相似的单斜晶体系统中结晶,但在其晶胞中有所不同,R = Cy时独立分子数加倍(Z' = 2),且按照惯例选择了滑移面。通过X射线结构分析得到的邻甲苯基取代基的优选取向,对于R = Ph为gauche构象,对于R = Cy为anti构象(以Se - P - C - C扭转角为参考)。密度泛函理论(DFT)计算表明两种构象的可能性相同,并表明优选的固态构象可能是由于排斥能最小化,导致在R = Ph结构中堆积排列主要以弱C - H...Se相互作用和额外的C - H...π相互作用为特征。使用Se - P键长、多核NMR J耦合常数、理论拓扑评估以及晶体学和立体角计算对这两种膦进行了详细的电子和空间分析,并与选定的文献实例进行了比较。结果表明,邻甲苯基取代基的使用增加了供电子能力和空间大小,但也取决于邻甲苯基是采用gauche构象还是anti构象。由于在R = Cy结构中观察到Se原子的位移参数较大,单晶几何数据无法检测到这两种结构之间的电子差异。