Department of Chemistry, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, N2L 3G1, Canada.
J Phys Chem A. 2010 Jan 14;114(1):324-35. doi: 10.1021/jp908325n.
We report the results of our solid-state (67)Zn NMR study of the various zinc sites in four zinc-amino acid coordination complexes: bis(glycinato)zinc(II) monohydrate; bis(l-alaninato)zinc(II); bis(l-histidinato)zinc(II) dihydrate; and sodium bis(l-cysteinato)zincate(II) hexahydrate; as well as a related complex, bis(imidazole)zinc(II) chloride. We demonstrate the advantages of using high (21.1 T) applied magnetic fields for detecting (67)Zn directly at ambient temperatures using the quadrupolar Carr-Purcell Meiboom-Gill (QCPMG) pulse sequence. The stepped-frequency technique was employed in cases where the central-transition (CT) (67)Zn NMR spectra were too broad to be uniformly excited. The parameters of the anisotropic zinc tensors were extracted by iterative simulations of the experimental spectra. In all cases, the quadrupolar interaction is found to dominate the central-transition (67)Zn NMR spectra; no convincing effects from chemical shift anisotropy (CSA) on the NMR spectra of the five complexes could be reliably detected at this field strength. Analyses of the experimental NMR spectra reveal that the (67)Zn quadrupolar coupling constants (C(Q)) range from 7.05 to 26.4 MHz, the isotropic chemical shifts (delta(iso)) range from 140 to 265 ppm, and the quadrupolar asymmetry parameters (eta(Q)) range from 0.20 to 0.95. The first report of the NMR spectral features of pentacoordinated zinc sites is included for two complexes. Quantum chemical calculations of the electric field gradient (EFG) and magnetic shielding tensors reproduced the experimental results to a reasonable extent. Moreover, the computationally determined orientations of both tensors permit correlations between NMR tensor properties and zinc local environments to be understood.
我们报告了在四个锌-氨基酸配位配合物中的各种锌位点的固态(67)Zn NMR 研究结果:二(甘氨酸)锌(II)一水合物;二(L-丙氨酸)锌(II);二(L-组氨酸)锌(II)二水合物;和六水合钠双(L-半胱氨酸)锌酸盐(II);以及相关的配合物,二(咪唑)锌(II)氯化物。我们展示了在环境温度下使用四极 Carr-Purcell Meiboom-Gill(QCPMG)脉冲序列直接检测(67)Zn 的高(21.1 T)应用磁场的优势。在中央转变(CT)(67)Zn NMR 光谱太宽而无法均匀激发的情况下,采用阶跃频率技术。通过对实验光谱的迭代模拟提取各向异性锌张量的参数。在所有情况下,发现四极相互作用主导中央转变(67)Zn NMR 光谱;在这种场强下,无法可靠地检测到五个配合物的 NMR 光谱中化学位移各向异性(CSA)的令人信服的影响。对实验 NMR 光谱的分析表明,(67)Zn 四极耦合常数(C(Q))范围为 7.05 至 26.4 MHz,各向同性化学位移(delta(iso))范围为 140 至 265 ppm,四极不对称参数(eta(Q))范围为 0.20 至 0.95。报告了两个配合物中五配位锌位点的 NMR 光谱特征的首次报告。电场梯度(EFG)和磁屏蔽张量的量子化学计算在相当程度上再现了实验结果。此外,计算确定的两个张量的取向允许理解 NMR 张量性质与锌局部环境之间的相关性。