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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Central Transition Nuclear Magnetic Resonance in Presence of Large Quadrupole Couplings: Cobalt-59 Nuclear Magnetic Resonance of Cobaltophthalocyanines
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Central Transition Nuclear Magnetic Resonance in Presence of Large Quadrupole Couplings: Cobalt-59 Nuclear Magnetic Resonance of Cobaltophthalocyanines

机译:存在大四极偶合子时的中心跃迁核磁共振:钴酞菁的Cobalt-59核磁共振

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摘要

The acquisition of distortion-free solid-state nuclear magnetic resonance (NMR) powder line shapes from half-integer spin systems possessing large quadrupole couplings is exemplified on cobaltophthalocyanine complexes. The acquisition of ideal-like static line shapes even for megahertz-wide central transition patterns is discussed, with the aid of spin-echo sequences incorporating short and very weak radio frequency (rf) pulses. Under these conditions most of the crystallites within the bandwidth of interest are excited with essentially orientation-independent pulse angles, while the acquisition of several experiments with varying carrier frequency offsets alleviates the limited bandwidth of the excitation given by the rf pulse lengths. After this approach was tuned with the aid of quantum mechanical calculations and model compounds, it was applied to the study of diamagnetic metal centers in hexacoordinated Co (III) phthalocyanines. Solid-state ~(59)Co NMR spectra were acquired as a function of the external magnetic field on complexes with general structure [(L)_2CoPc] Br, where Pc denotes the phthalocyanine macrocycle and the axial ligands L were pyridine, methylimidazole, methylpiperidine, and ammonia. Iterative numerical fittings of these data revealed anisotropic coupling parameters that were larger than those observed in cobaltoporphyrin analogues but, which like the latter, deviated from trends traditionally observed for nonaromatic octahedral cobalt complexes. These systematic differences observed for the various ~(59)Co coupling parameters are discussed.
机译:从具有大四极偶合的半整数自旋系统中获取无畸变的固态核磁共振(NMR)粉末线形的示例是钴酞菁配合物。借助于自旋回波序列,结合了短而非常弱的射频(rf)脉冲,讨论了即使对于兆赫兹宽的中心过渡模式,也可以获得理想的静态线形。在这些条件下,目标带宽内的大多数微晶都以基本上与方向无关的脉冲角进行激励,而获得具有不同载频偏移的多个实验可以减轻射频脉冲长度给定的有限的激励带宽。在借助量子力学计算和模型化合物对这种方法进行了调整之后,该方法被用于研究六配位Co(III)酞菁中的抗磁性金属中心。在具有[[L] _2CoPc] Br通式结构的配合物中,获得了〜(59)Co NMR固态光谱,作为外部磁场的函数,其中Pc表示酞菁大环,轴向配体L为吡啶,甲基咪唑,甲基哌啶和氨。这些数据的迭代数值拟合显示各向异性耦合参数大于钴卟啉类似物中观察到的参数,但与后者相似,它偏离了传统上非芳族八面体钴配合物观察到的趋势。讨论了各种〜(59)Co耦合参数观察到的系统差异。

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