首页> 外文期刊>journal of chemical physics >Nuclear Magnetic Resonance of7Li and1H in Solid Lithium Imide, Lithium Amide, and Lithium Nitride
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Nuclear Magnetic Resonance of7Li and1H in Solid Lithium Imide, Lithium Amide, and Lithium Nitride

机译:固体酰亚胺锂、酰胺锂和氮化锂中7Li和1H的核磁共振

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Nuclear magnetic resonance lines of7Li nuclei have been observed in solid, polycrystalline samples of LiNH2, LiNH, and Li3N. Proton resonance lines have also been observed in the first two samples. In LiNH2there is a splitting of the7Li resonance line due to first‐order quadrupole effects which indicates a coupling constant of 119±4 kHz (estimated limit to maximum error) at room temperature. In Li2NH no quadrupole effects are seen which is in agreement with the fact that the lithium nuclei in this compound are situated in sites of cubic symmetry. In Li3N both first‐ and second‐order quadrupole effects have been observed simultaneously. From these data7Li coupling constants for Li3N have been found to be 296±4 and 200±10 kHz at room temperature. An unexplained line was also observed at low magnetic fields for this compound. These effects were found to vary with temperature and with the purity of the sample.
机译:在LiNH2、LiNH和Li3N的固体多晶样品中观察到了7Li原子核的核磁共振谱。在前两个样品中也观察到质子共振线。在LiNH2中,由于一阶四极杆效应,7Li谐振线分裂,表明室温下的耦合常数为119±4 kHz(估计最大误差的极限)。在 Li2NH 中没有看到四极杆效应,这与该化合物中的锂核位于立方对称位点的事实一致。在Li3N中,同时观察到一阶四极杆效应和二阶四极杆效应。从这些数据中发现7Li3N的耦合常数在室温下为296±4和200±10 kHz。在低磁场下也观察到该化合物的一条无法解释的线。发现这些效应随温度和样品纯度而变化。

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