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用于溶解动态核极化 NMR 光谱学的专用光谱仪。

A dedicated spectrometer for dissolution DNP NMR spectroscopy.

机构信息

Sir Peter Mansfield Magnetic Resonance Centre, School of Physics & Astronomy, University of Nottingham, Nottingham, NG7 2RD, United Kingdom.

出版信息

Phys Chem Chem Phys. 2010 Jun 14;12(22):5883-92. doi: 10.1039/c002566f. Epub 2010 May 11.

Abstract

Using low temperature dynamic nuclear polarisation (DNP) in conjunction with dissolution makes it possible to generate highly polarised nuclear spin systems for liquid state applications of nuclear magnetic resonance spectroscopy. However, in its current implementation, which requires the transfer of the solute between two different magnets, the hyperpolarisation strategy is limited to spin systems with relatively long longitudinal relaxation time constants. Here we describe the design and construction of a dedicated spectrometer for DNP applications that is based on a magnet with two isocentres. DNP enhancement is carried out in the upper compartment of this magnet in a low temperature environment at 3.35 T, while a 9.4 T isocentre in the lower compartment is used for high resolution NMR spectroscopy. The close proximity (85 cm) of the two isocentres makes it possible to transfer the sample in the solid state with very little loss of spin polarisation. In first performance tests this novel experimental set-up proved to be superior to the strategy involving two separate magnets.

摘要

使用低温动态核极化(DNP)结合溶解可以为核磁共振波谱的液相应用生成高极化核自旋系统。然而,在当前需要在两个不同磁铁之间转移溶质的实施方式中,该超极化策略仅限于具有相对较长纵向弛豫时间常数的自旋系统。本文介绍了一种基于具有两个等中心的磁铁的专用 DNP 应用谱仪的设计和构造。在 3.35 T 的低温环境中,在上部磁铁腔内进行 DNP 增强,而下部磁铁腔内的 9.4 T 等中心则用于高分辨率 NMR 光谱学。两个等中心的近距离(85 厘米)使得可以在固体状态下转移样品,而几乎不会损失自旋极化。在首次性能测试中,这种新型实验装置被证明优于涉及两个单独磁铁的策略。

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