Pelupessy Philippe, Rennella Enrico, Bodenhausen Geoffrey
Département de Chimie Associé au CNRS, Ecole Normale Supérieure, 24 rue Lhomond, 75231 Paris Cedex 05, France.
Science. 2009 Jun 26;324(5935):1693-7. doi: 10.1126/science.1175102.
Nuclear magnetic resonance (NMR) experiments are usually carried out in homogeneous magnetic fields. In many cases, however, high-resolution spectra are virtually impossible to obtain because of the inherent heterogeneity of the samples or living organisms under investigation, as well as the poor homogeneity of the magnets (particularly when bulky samples must be placed outside their bores). Unstable power supplies and vibrations arising from cooling can lead to field fluctuations in time as well as space. We show how high-resolution NMR spectra can be obtained in inhomogeneous fields with unknown spatiotemporal variations. Our method, based on coherence transfer between spins, can accommodate spatial inhomogeneities of at least 11 gauss per centimeter and temporal fluctuations slower than 2 hertz.
核磁共振(NMR)实验通常在均匀磁场中进行。然而,在许多情况下,由于所研究的样品或生物体固有的不均匀性,以及磁体的均匀性较差(特别是当大体积样品必须放置在磁体孔外时),几乎不可能获得高分辨率光谱。不稳定的电源和冷却产生的振动会导致磁场在时间和空间上的波动。我们展示了如何在具有未知时空变化的非均匀磁场中获得高分辨率NMR光谱。我们基于自旋之间的相干转移的方法可以适应至少每厘米11高斯的空间不均匀性和低于2赫兹的时间波动。