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一种用于通过手动摇晃样品实现高效且可重复的SABRE超极化的简单手持式磁体阵列。

A simple hand-held magnet array for efficient and reproducible SABRE hyperpolarisation using manual sample shaking.

作者信息

Richardson Peter M, Jackson Scott, Parrott Andrew J, Nordon Alison, Duckett Simon B, Halse Meghan E

机构信息

Centre for Hyperpolarisation in Magnetic Resonance (CHyM), Department of Chemistry, University of York, York, UK.

WestCHEM, Department of Pure and Applied Chemistry and CPACT, University of Strathclyde, Glasgow, UK.

出版信息

Magn Reson Chem. 2018 Jul;56(7):641-650. doi: 10.1002/mrc.4687. Epub 2018 Jan 3.

Abstract

Signal amplification by reversible exchange (SABRE) is a hyperpolarisation technique that catalytically transfers nuclear polarisation from parahydrogen, the singlet nuclear isomer of H , to a substrate in solution. The SABRE exchange reaction is carried out in a polarisation transfer field (PTF) of tens of gauss before transfer to a stronger magnetic field for nuclear magnetic resonance (NMR) detection. In the simplest implementation, polarisation transfer is achieved by shaking the sample in the stray field of a superconducting NMR magnet. Although convenient, this method suffers from limited reproducibility and cannot be used with NMR spectrometers that do not have appreciable stray fields, such as benchtop instruments. Here, we use a simple hand-held permanent magnet array to provide the necessary PTF during sample shaking. We find that the use of this array provides a 25% increase in SABRE enhancement over the stray field approach, while also providing improved reproducibility. Arrays with a range of PTFs were tested, and the PTF-dependent SABRE enhancements were found to be in excellent agreement with comparable experiments carried out using an automated flow system where an electromagnet is used to generate the PTF. We anticipate that this approach will improve the efficiency and reproducibility of SABRE experiments carried out using manual shaking and will be particularly useful for benchtop NMR, where a suitable stray field is not readily accessible. The ability to construct arrays with a range of PTFs will also enable the rapid optimisation of SABRE enhancement as function of PTF for new substrate and catalyst systems.

摘要

通过可逆交换进行信号放大(SABRE)是一种超极化技术,它能催化地将核极化从仲氢(H的单重态核异构体)转移到溶液中的底物上。SABRE交换反应在几十高斯的极化转移场(PTF)中进行,然后转移到更强的磁场中进行核磁共振(NMR)检测。在最简单的实现方式中,极化转移是通过在超导NMR磁体的杂散场中摇晃样品来实现的。尽管这种方法很方便,但它的重现性有限,并且不能用于没有明显杂散场的NMR光谱仪,如台式仪器。在这里,我们使用一个简单的手持式永磁体阵列在样品摇晃过程中提供必要的PTF。我们发现,使用这种阵列比杂散场方法的SABRE增强提高了25%,同时也提高了重现性。测试了一系列具有不同PTF的阵列,发现与使用电磁铁产生PTF的自动流动系统进行的可比实验相比,依赖于PTF的SABRE增强结果非常吻合。我们预计,这种方法将提高使用手动摇晃进行的SABRE实验的效率和重现性,并且对于台式NMR将特别有用,因为在台式NMR中不容易获得合适的杂散场。构建具有不同PTF的阵列的能力还将使我们能够快速优化SABRE增强,使其成为新底物和催化剂系统的PTF的函数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce98/6001426/7905d4844d46/MRC-56-641-g001.jpg

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