Inorganic Chemistry Laboratory, Department of Chemistry, University of Oxford, South Parks Road, Oxford, UK OX1 3QR.
Dalton Trans. 2011 Oct 28;40(40):10345-50. doi: 10.1039/c1dt10185d. Epub 2011 Mar 15.
Steric crowding brought about on pyramidalization at boron has been predicted computationally to be of central importance to the strength and selectivity of anion binding by triarylboranes. The role of steric factors in systems containing a ferrocenyl reporter unit has been systematically probed in the current study by comparison of the F(-)/CN(-) binding properties of FcB(o-Tol)(2) (1, o-Tol = C(6)H(4)Me-2), FcB(o-Xyl)(2) (2, o-Xyl = C(6)H(3)Me(2)-2,6) and FcBMes(2) (3, Mes = C(6)H(2)Me(3)-2,4,6)), both in solution and in the solid state. Somewhat surprisingly, the inclusion of an extra ortho-methyl aryl substituent (e.g. for 2/3vs.1) is found to have a relatively small effect on the binding affinities of these boranes (e.g. log(10)K(CN) = 5.94(0.02), 4.73(0.01), 5.56(0.02), for 1, 2 and 3 respectively). Consistent with this observation, the degree of pyramidalization at boron determined for the cyanide adducts 1·CN, 2·CN and 3·CN in the solid state is also found to be essentially invariant (∠C(aryl)-B-C(aryl) = 338, 337, 337°, respectively), as are the B-CN and mean B-C(aryl) distances. In the solid state at least, it is apparent that the adverse steric effects potentially brought about by increasing ortho substitution are mitigated by a greater degree of synchronous rotation of the aryl substituents about the B-C(aryl) bonds. Thus a mean inter-plane angle of 71° is observed for 1·CN while the corresponding values for 2·CN and 3·CN are 78° and 79°.
由于硼原子的三角锥形化而导致的空间位阻已通过计算预测对三芳基硼阴离子结合的强度和选择性具有至关重要的作用。在当前的研究中,通过比较 FcB(o-Tol)(2)(1,o-Tol=C(6)H(4)Me-2)、FcB(o-Xyl)(2)(2,o-Xyl=C(6)H(3)Me(2)-2,6)和 FcBMes(2)(3,Mes=C(6)H(2)Me(3)-2,4,6)中 F(-)/CN(-)结合性质,系统地研究了含有二茂铁报告单元的体系中空间位阻因素的作用,这两种化合物既存在于溶液中,也存在于固态中。令人有些惊讶的是,发现增加一个额外的邻位甲基芳基取代基(例如 2/3 相对于 1)对这些硼烷的结合亲和力的影响相对较小(例如 log(10)K(CN)=5.94(0.02)、4.73(0.01)、5.56(0.02),分别对应于 1、2 和 3)。与这一观察结果一致,在固态中确定的氰化物加合物1·CN、2·CN和3·CN中硼的三角锥形化程度也被发现基本不变(∠C(aryl)-B-C(aryl)=338、337、337°,分别),B-CN 和平均 B-C(aryl)距离也是如此。至少在固态中,显然增加邻位取代可能带来的不利空间位阻效应被芳基取代基围绕 B-C(aryl)键的更大程度的同步旋转所缓解。因此,观察到1·CN的平均面间角为 71°,而2·CN和3·CN的相应值分别为 78°和 79°。