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微型化和低场核磁共振的进展。

Progress in miniaturization and low-field nuclear magnetic resonance.

机构信息

Institute of Smart Sensors, University of Stuttgart, Pfaffenwaldring 47, D-70569 Stuttgart, Germany; Center for Integrated Quantum Science and Technology (IQ(ST)), Germany.

Institute of Smart Sensors, University of Stuttgart, Pfaffenwaldring 47, D-70569 Stuttgart, Germany.

出版信息

J Magn Reson. 2021 Jan;322:106860. doi: 10.1016/j.jmr.2020.106860.

Abstract

In this paper, we review the latest developments in miniaturization of NMR systems with an emphasis on low-field NMR. We briefly cover the topics of magnet and coil miniaturization, elaborating on the advantages and disadvantages of miniaturized coils for different applications. The main part of the article is dedicated to progress in NMR electronics. Here, we touch upon software-defined radios as an emerging gadget for NMR before we provide a detailed discussion of NMR-on-a-chip transceivers as the ultimate solution in terms of miniaturization of NMR electronics. In addition to discussing the miniaturization capabilities of the NMR-on-a-chip approach, we also investigate the potential use of NMR-on-a-chip devices for an improved NMR system performance. Here, we also discuss the possibility of combining the NMR-on-a-chip approach with EPR-on-a-chip spectrometers to form compact DNP-on-a-chip systems that can provide a significant sensitivity boost, especially for low-field NMR systems.

摘要

在本文中,我们回顾了核磁共振(NMR)系统小型化的最新进展,重点介绍低场 NMR。我们简要介绍了磁铁和线圈小型化的主题,阐述了不同应用中小型化线圈的优缺点。文章的主要部分致力于 NMR 电子学的进展。在这里,我们讨论了软件定义无线电(SDR)作为 NMR 的新兴小工具,然后详细讨论了 NMR 芯片收发器作为 NMR 电子学小型化的最终解决方案。除了讨论 NMR 芯片方法的小型化能力外,我们还研究了 NMR 芯片设备在提高 NMR 系统性能方面的潜在用途。在这里,我们还讨论了将 NMR 芯片方法与电子顺磁共振(EPR)芯片光谱仪相结合以形成紧凑的 DNP 芯片系统的可能性,该系统可以提供显著的灵敏度提升,特别是对于低场 NMR 系统。

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