Lo Andy Y H, Bitterwolf Thomas E, Macdonald Charles L B, Schurko Robert W
Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, Canada N9B 3P4.
J Phys Chem A. 2005 Aug 18;109(32):7073-87. doi: 10.1021/jp0521499.
Solid-state 93Nb and 13C NMR experiments, in combination with theoretical calculations of NMR tensors, and single-crystal and powder X-ray diffraction experiments, are applied for the comprehensive characterization of structure and dynamics in a series of organometallic niobium complexes. Half-sandwich niobium metallocenes of the forms Cp'Nb(I)(CO)4 and CpNb(V)Cl4 are investigated, where Cp = C5H5- and Cp' = C5H4R- with R = COMe, CO2Me, CO2Et, and COCH2Ph. Anisotropic quadrupolar and chemical shielding (CS) parameters are extracted from 93Nb MAS and static NMR spectra for seven different complexes. It is demonstrated that 93Nb NMR parameters are sensitive to changes in temperature and Cp' ring substitution in the Cp'Nb(I)(CO)4 complexes. There are dramatic differences in the 93Nb quadrupolar coupling constants (C(Q)) between the Nb(I) and Nb(V) complexes, with C(Q) between 1.0 and 12.0 MHz for Cp'Nb(CO)4 and C(Q) = 54.5 MHz for CpNbCl4. The quadrupolar Carr-Purcell Meiboom-Gill (QCPMG) pulse sequence is applied to rapidly acquire, in a piecewise fashion, a high signal-to-noise ultra-wide-line 93Nb NMR spectrum of CpNbCl4, which has a breadth of ca. 400 kHz. Solid-state 93Nb and 13C NMR spectra and powder XRD data are used to identify a new metallocene adduct coordinated at the axial position of the metal site by a THF molecule: CpNb(V)Cl4.THF. 13C MAS and CP/MAS NMR experiments are used to assess the purity of samples, as well as for measuring carbon CS tensors and the rare instance of one-bond 93Nb, 13C J-coupling, 1J(93Nb,13C). Theoretically calculated CS and electric field gradient (EFG) tensors are utilized to determine relationships between tensor orientations, the principal components, and molecular structures.
固态93Nb和13C核磁共振实验,结合核磁共振张量的理论计算,以及单晶和粉末X射线衍射实验,被用于对一系列有机金属铌配合物的结构和动力学进行全面表征。研究了形式为Cp'Nb(I)(CO)4和CpNb(V)Cl4的半夹心铌茂金属,其中Cp = C5H5-且Cp' = C5H4R-,R = COMe、CO2Me、CO2Et和COCH2Ph。从七种不同配合物的93Nb MAS和静态核磁共振谱中提取了各向异性四极和化学屏蔽(CS)参数。结果表明,93Nb核磁共振参数对Cp'Nb(I)(CO)4配合物中温度和Cp'环取代的变化敏感。Nb(I)和Nb(V)配合物之间的93Nb四极耦合常数(C(Q))存在显著差异,对于Cp'Nb(CO)4,C(Q)在1.0至12.0 MHz之间,而对于CpNbCl4,C(Q) = 54.5 MHz。应用四极 Carr-Purcell Meiboom-Gill(QCPMG)脉冲序列以分段方式快速获取CpNbCl4的高信噪比超宽线93Nb核磁共振谱,其线宽约为400 kHz。固态93Nb和13C核磁共振谱以及粉末XRD数据用于鉴定一种新的茂金属加合物,该加合物通过THF分子在金属位点的轴向位置配位:CpNb(V)Cl4.THF。13C MAS和CP/MAS核磁共振实验用于评估样品的纯度,以及测量碳CS张量和单键93Nb、13C J耦合(1J(93Nb,13C))的罕见情况。理论计算的CS和电场梯度(EFG)张量用于确定张量取向、主成分和分子结构之间的关系。