Becker Gerd, Golla Winfried, Grobe Joseph, Klinkhammer Karl Wilhelm, Le Van Duc, Maulitz Andreas H., Mundt Otto, Oberhammer Heinz, Sachs Martin
Institut für Anorganische Chemie, Universität Stuttgart, Pfaffenwaldring 55, D-70569 Stuttgart, Germany, Anorganisch-Chemisches Institut, Westfälische Wilhelms-Universität, Wilhelm-Klemm-Strasse 8, D-48149 Münster, Germany, Institut für Anorganische Chemie, Martin-Luther-Universität Halle-Wittenberg, Kurt-Mothes-Strasse 2, D-06120 Halle, Germany, and Institut für Physikalische und Theoretische Chemie, Eberhard-Karls-Universität, Auf der Morgenstelle 8, D-72076 Tübingen, Germany.
Inorg Chem. 1999 Mar 22;38(6):1099-1107. doi: 10.1021/ic981218d.
X-ray structure determinations of tetrakis(trifluoromethyl)diphosphane (2c, mp -82 degrees C, triclinic, P&onemacr;; Z = 1, a = 529.7(3) pm, b = 681.6(2) pm, c = 802.8(3) pm, alpha = 108.58(1) degrees, beta = 99.66(1) degrees, gamma = 103.29(1) degrees, wR2 = 0.204) and -diarsane (3c, mp -52 degrees C, monoclinic, P2(1)/c; Z = 2, a = 769.5(3) pm, b = 750.0(3) pm, c = 960.7(2) pm, beta = 105.26(1) degrees, wR2 = 0.115), both at -100(3) degrees C, reveal the molecules to adopt the trans conformation in the solid. Compared with the tetramethyl derivatives, the E-E (224.6(2)/246.3(1) pm, E = P, As) and E-C (188.3(4)/201.3(7) pm) bonds are elongated by 4.5/4.8 pm and 3.4/3.4 pm, respectively. From gas electron diffraction studies of diphosphane 2c a mixture of 85(10)% trans and 15(10)% gauche conformers can be deduced; diarsane 3c shows the trans form exclusively. The molecular parameters (E-E, 224.8(11)/245.2(6); E-C, 189.6(4)/ 201.2(4) pm) agree excellently with those determined for the crystalline state. As a result of quantum chemical calculations at Hartree-Fock and hybrid density functional levels of theory using 6-311+G basis sets, the gauche conformer of hydrazine derivative 1c and the trans conformer of diarsane 3c are clearly lowest in energy. However, for diphosphane 2c the gauche and not the trans form is found to be slightly more stable. Variations of calculated E-E and E-C bond lengths are analyzed and compared with corresponding values of the parent compounds E(2)H(4) (1a to 3a) as well as the tetramethyl derivatives 1b to 3b.
在-100(3)℃下对四(三氟甲基)二膦烷(2c,熔点-82℃,三斜晶系,P&onemacr;;Z = 1,a = 529.7(3)pm,b = 681.6(2)pm,c = 802.8(3)pm,α = 108.58(1)°,β = 99.66(1)°,γ = 103.29(1)°,wR2 = 0.204)和二砷烷(3c,熔点-52℃,单斜晶系,P2(1)/c;Z = 2,a = 769.5(3)pm,b = 750.0(3)pm,c = 960.7(2)pm,β = 105.26(1)°,wR2 = 0.115)进行X射线结构测定,结果表明分子在固态中采取反式构象。与四甲基衍生物相比,E-E(224.6(2)/246.3(1)pm,E = P,As)键和E-C(188.3(4)/201.3(7)pm)键分别伸长了4.5/4.8 pm和3.4/3.4 pm。通过对二膦烷2c的气体电子衍射研究,可以推断出存在85(10)%的反式和15(10)%的gauche构象异构体的混合物;二砷烷3c仅显示反式构象。分子参数(E-E,224.8(11)/245.2(6);E-C,189.6(4)/201.2(4)pm)与晶体状态下测定的结果非常吻合。通过使用6-311+G基组在哈特里-福克和混合密度泛函理论水平上进行量子化学计算,结果表明肼衍生物1c的gauche构象异构体和二砷烷3c的反式构象异构体能量明显最低。然而,对于二膦烷2c,发现gauche构象异构体比反式构象异构体稍微稳定一些。分析了计算得到的E-E键和E-C键长度的变化,并与母体化合物E(2)H(4)(1a至3a)以及四甲基衍生物1b至3b的相应值进行了比较。