Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, Canada N9B 3P4.
J Am Chem Soc. 2010 Dec 29;132(51):18301-17. doi: 10.1021/ja107749b. Epub 2010 Dec 3.
(91)Zr (I = 5/2) solid-state NMR (SSNMR) spectra of the zirconocene compounds, Cp(2)ZrCl(2), Cp*(2)ZrCl(2) (1), Cp(2)ZrBr(2) (2), (Me(3)SiC(5)H(4))(2)ZrBr(2) (3), O(Me(2)SiC(5)H(4))(2)ZrBr(2) (4), (1,3-C(5)H(3))(SiMe(2)OSiMe(2))(2)(1,3-C(5)H(3))ZrBr(2) (5), Ind(2)ZrCl(2) (6), Cp(2)ZrMeCl (7), Cp(2)ZrMe(2) (8), and [Cp(2)ZrMe][MeB(C(6)F(5))(3)] (9) have been acquired. Static (91)Zr SSNMR spectra have been acquired for all complexes at magnetic fields of 9.4 and 21.1 T. Cp(2)ZrCl(2) and complexes 1 to 5 possess relatively narrow central transition powder patterns which allows for magic-angle spinning (MAS) (91)Zr solid-state NMR spectra to be acquired at a moderate field strength of 9.4 T. Complexes 6 to 9 possess ultrawideline central transition SSNMR spectra necessitating piece-wise acquisition techniques. From the static and MAS (91)Zr SSNMR spectra, it is possible to measure (91)Zr electric field gradient (EFG) and chemical shift (CS) tensor parameters, as well as the Euler angles which describe their relative orientation. Basis sets and methods for the accurate quantum chemical calculation of (91)Zr EFG and CS tensors have been identified. The origin of the observed EFG and CS tensor parameters are further investigated by visualization of the EFG and CS tensor orientations within the molecular frames. Correlations between the observed and calculated NMR tensor parameters and molecular symmetry and structure are made. All of these observations suggest that (91)Zr SSNMR spectroscopy can be utilized to probe the molecular structure of a variety of homogeneous and heterogeneous olefin polymerization catalysts.
已获取锆茂化合物 Cp(2)ZrCl(2)、Cp*(2)ZrCl(2) (1)、Cp(2)ZrBr(2) (2)、(Me(3)SiC(5)H(4))(2)ZrBr(2) (3)、O(Me(2)SiC(5)H(4))(2)ZrBr(2) (4)、(1,3-C(5)H(3))(SiMe(2)OSiMe(2))(2)(1,3-C(5)H(3))ZrBr(2) (5)、Ind(2)ZrCl(2) (6)、Cp(2)ZrMeCl (7)、Cp(2)ZrMe(2) (8)和[Cp(2)ZrMe][MeB(C(6)F(5))(3)] (9)的(91)Zr 固态 NMR (SSNMR)谱。在磁场为 9.4 和 21.1 T 时,已获取所有配合物的静态(91)Zr SSNMR 谱。Cp(2)ZrCl(2)和配合物 1 到 5 具有相对较窄的中央跃迁粉末图案,允许在中等磁场强度 9.4 T 下获取魔角旋转 (MAS) (91)Zr 固态 NMR 谱。配合物 6 到 9 具有超宽中央跃迁 SSNMR 谱,需要分段采集技术。从静态和 MAS (91)Zr SSNMR 谱中,可以测量(91)Zr 电场梯度 (EFG)和化学位移 (CS)张量参数,以及描述它们相对取向的欧拉角。已确定了用于准确量子化学计算(91)Zr EFG 和 CS 张量的基组和方法。通过在分子框架内可视化 EFG 和 CS 张量的取向,进一步研究了观察到的 EFG 和 CS 张量参数的起源。观察到的和计算的 NMR 张量参数与分子对称性和结构之间存在相关性。所有这些观察结果表明,(91)Zr SSNMR 光谱可用于探测各种均相和多相烯烃聚合催化剂的分子结构。