Interfacing Liquid State Hyperpolarization Methods with NMR Instrumentation

IF 2.624
Pierce Pham, Ratnamala Mandal, Chang Qi, Christian Hilty
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引用次数: 0

Abstract

Advances in liquid state hyperpolarization methods have enabled new applications of high-resolution NMR spectroscopy. Utilizing strong signal enhancements from hyperpolarization allows performing NMR spectroscopy at low concentration, or with high time resolution. Making use of the high, but rapidly decaying hyperpolarization in the liquid state requires new techniques to interface hyperpolarization equipment with liquid state NMR spectrometers. This article highlights rapid injection, high resolution NMR spectroscopy with hyperpolarization produced by the techniques of dissolution dynamic nuclear polarization (D-DNP) and para-hydrogen induced polarization (PHIP). These are popular, albeit not the only methods to produce high polarization levels for liquid samples. Gas and liquid driven sample injection techniques are compatible with both of these hyperpolarization methods. The rapid sample injection techniques are combined with adapted NMR experiments working in a single, or small number of scans. They expand the application of liquid state hyperpolarization to spins with comparably short relaxation times, provide enhanced control over sample conditions, and allow for mixing experiments to study reactions in real time.

Abstract Image

液相超极化方法与核磁共振仪器的结合
液相超极化方法的进步使高分辨率核磁共振光谱的新应用成为可能。利用超极化的强信号增强,可以在低浓度或高时间分辨率下进行核磁共振波谱。利用液态高但快速衰减的超极化需要将超极化设备与液态核磁共振光谱仪相连接的新技术。本文重点介绍了溶解动态核极化(D-DNP)和对氢诱导极化(PHIP)技术产生的快速进样、高分辨率超极化核磁共振波谱。这些都是流行的,尽管不是唯一的方法来产生高偏振水平的液体样品。气体和液体驱动的样品进样技术与这两种超极化方法兼容。快速样品注入技术与适应的核磁共振实验相结合,在单个或少量扫描中工作。他们将液态超极化的应用扩展到弛豫时间相对较短的自旋,提供了对样品条件的增强控制,并允许混合实验实时研究反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.90
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