Findeisen M, Brand T, Berger S
University of Leipzig, Institute of Analytical Chemistry, Linnéstr. 3, D-04103 Leipzig, Germany.
Magn Reson Chem. 2007 Feb;45(2):175-8. doi: 10.1002/mrc.1941.
Most established NMR thermometers rely on temperature-dependent chemical shift differences measured from samples that are either neat or concentrated solutions (e.g. ethylene glycol, methanol). These are unsuitable for modern cryoprobes on account of strong radiation damping resulting from the high Q of the probe. Using perdeuterated methanol, we established a relationship between the chemical shift difference and temperature, and we show that this relationship is well fitted by a quadratic equation. The actual temperature within a sample tube in the probe was verified using a Pt-100 resistor.
大多数已有的核磁共振温度计依赖于从纯物质或浓溶液(如乙二醇、甲醇)样品中测量的与温度相关的化学位移差异。由于探头的高品质因数导致的强辐射阻尼,这些不适用于现代低温探头。使用全氘代甲醇,我们建立了化学位移差异与温度之间的关系,并表明这种关系可以很好地用二次方程拟合。使用铂电阻温度计(Pt-100)验证了探头中样品管内的实际温度。