Hoffman Roy E
Department of Organic Chemistry, Hebrew University of Jerusalem, Safra Campus, Givat Ram, Jerusalem 91904, Israel.
Magn Reson Chem. 2006 Jun;44(6):606-16. doi: 10.1002/mrc.1801.
The standard for chemical shift is dilute tetramethylsilane (TMS) in CDCl3, but many measurements are made relative to TMS in other solvents, the proton resonance of the solvent peak or relative to the lock frequency. Here, the chemical shifts of TMS and the proton and deuterium chemical shifts of the solvent signals of several solvents are measured over a wide temperature range. This allows for the use of TMS or the solvent and lock signal as a secondary reference for other NMR signals, as compared with dilute TMS in CDCl3 at a chosen temperature; 25 degrees C is chosen here. An accuracy of 0.02 ppm is achievable for dilute solutions, provided that the interaction with the solvent is not very strong. The proton chemical shift of residual water is also reported where appropriate.
化学位移的标准是CDCl₃中稀释的四甲基硅烷(TMS),但许多测量是相对于其他溶剂中的TMS、溶剂峰的质子共振或相对于锁定频率进行的。在此,在很宽的温度范围内测量了几种溶剂的TMS化学位移以及溶剂信号的质子和氘化学位移。这使得TMS或溶剂及锁定信号可作为其他NMR信号的二级参考,与在选定温度(此处选择25℃)下CDCl₃中的稀释TMS相比。对于稀溶液,只要与溶剂的相互作用不是很强,就能达到0.02 ppm的精度。在适当的情况下,还报告了残留水的质子化学位移。