Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, Canada N9B 3P4.
Magn Reson Chem. 2007 Dec;45 Suppl 1:S116-28. doi: 10.1002/mrc.2124.
Solid-state (23) Na NMR spectra of two organometallic complexes, cyclopentadienylsodium (CpNa) and the tetrahydrofuran (THF) solvate of CpNa (CpNa·THF), are presented. Analytical simulations of experimental spectra and calculated (23) Na electric-field gradient (EFG) tensors confirm that both complexes are present in microcrystalline samples of CpNa recrystallized from THF. For the solvate, (23) Na NMR experiments at 9.4 T and 11.7 T elucidate sodium chemical shielding (CS) tensor parameters, and establish that the EFG and CS tensor frames are non-coincident. Single-crystal X-ray diffraction (XRD) experiments are used to determine the crystal structure of CpNa·THF: Cmca (a = 9.3242(15) Å, b = 20.611(3) Å, c = 9.8236(14) Å, α = β = γ = 90° , V = 1887.9(5)Å(3) , Z = 8). For CpNa, (23) Na NMR data acquired at multiple field strengths establish sodium CS tensor parameters more precisely than in previous reports. Variable-temperature (VT) powder XRD (pXRD) experiments determine the temperature dependence of the CpNa unit cell parameters. The combination of (23) Na quadrupolar NMR parameters, pXRD data and calculations of (23) Na EFG tensors is used to examine various models of dynamic motion in the solid state. It is proposed that the sodium atom in CpNa undergoes an anisotropic, temperature-dependent, low frequency motion within the ab crystallographic plane, in contrast with previous models.
呈现了两种有机金属配合物,环戊二烯钠(CpNa)和 CpNa 的四氢呋喃(THF)溶剂化物(CpNa·THF)的固态(23)Na NMR 谱。对实验谱的分析模拟和计算(23)Na 电场梯度(EFG)张量证实,这两种配合物都存在于从 THF 重结晶的 CpNa 的微结晶样品中。对于溶剂化物,在 9.4 T 和 11.7 T 的(23)Na NMR 实验中阐明了钠化学屏蔽(CS)张量参数,并确定 EFG 和 CS 张量框架不重合。单晶 X 射线衍射(XRD)实验用于确定 CpNa·THF 的晶体结构:Cmca(a = 9.3242(15) Å,b = 20.611(3) Å,c = 9.8236(14) Å,α = β = γ = 90°,V = 1887.9(5)Å(3),Z = 8)。对于 CpNa,在多个场强下获得的(23)Na NMR 数据比以前的报告更精确地确定了钠 CS 张量参数。变温(VT)粉末 XRD(pXRD)实验确定了 CpNa 晶胞参数随温度的变化。(23)Na 四极核磁共振参数、pXRD 数据和(23)Na EFG 张量的计算相结合,用于研究固态中各种动态运动模型。提出 CpNa 中的钠原子在 ab 晶面内经历各向异性、温度依赖的低频运动,这与以前的模型不同。