Hoffman Roy E
Department of Organic Chemistry, Institute of Chemistry, Safra Campus, The Hebrew University of Jerusalem, Givat Ram, Jerusalem 91904, Israel.
J Magn Reson. 2003 Aug;163(2):325-31. doi: 10.1016/s1090-7807(03)00142-3.
The chemical shift of TMS is commonly assumed to be zero. However, it varies by over 1 ppm for 1H and 4 ppm for 13C and shows a correlation with the physical properties of the solvent. Using the commonly accepted convention that TMS always resonates at zero leads to significant errors when comparing chemical shifts in different solvents. A new method for measuring absolute chemical shift with a conventional NMR spectrometer is demonstrated. The observed chemical shift is corrected by measuring and correcting for susceptibility and shape factor. Practical suggestions are made for modifying the current chemical shift standard while maintaining compatibility with earlier literature.
通常认为四甲基硅烷(TMS)的化学位移为零。然而,对于¹H来说,其变化超过1 ppm,对于¹³C则超过4 ppm,并且与溶剂的物理性质存在相关性。采用TMS总是在零处共振这一普遍接受的惯例,在比较不同溶剂中的化学位移时会导致显著误差。本文展示了一种使用传统核磁共振光谱仪测量绝对化学位移的新方法。通过测量和校正磁化率及形状因子来校正观测到的化学位移。文中针对修改当前化学位移标准同时保持与早期文献的兼容性提出了实用建议。