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首页> 外文期刊>Journal of magnetic resonance >A quasi-optical and corrugated waveguide microwave transmission system for simultaneous dynamic nuclear polarization NMR on two separate 14.1 T spectrometers
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A quasi-optical and corrugated waveguide microwave transmission system for simultaneous dynamic nuclear polarization NMR on two separate 14.1 T spectrometers

机译:一种用于同时动态核极化NMR的准光学和波纹波导微波传输系统,在两个单独的14.1T光谱仪上

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摘要

Nuclear magnetic resonance (NMR) is an intrinsically insensitive technique, with Boltzmann distributions of nuclear spin states on the order of parts per million in conventional magnetic fields. To overcome this limitation, dynamic nuclear polarization (DNP) can be used to gain up to three orders of magnitude in signal enhancement, which can decrease experimental time by up to six orders of magnitude. In DNP experiments, nuclear spin polarization is enhanced by transferring the relatively larger electron polarization to NMR active nuclei via microwave irradiation. Here, we describe the design and performance of a quasi-optical system enabling the use of a single 395 GHz gyrotron microwave source to simultaneously perform DNP experiments on two different 14.1 T (H-1 600 MHz) NMR spectrometers: one configured for magic angle spinning (MAS) solid state NMR; the other configured for solution state NMR experiments. In particular, we describe how the high power microwave beam is split, transmitted, and manipulated between the two spectrometers. A C-13 enhancement of 128 is achieved via the cross effect for alanine, using the nitroxide biradical AMUPol, under MAS-DNP conditions at 110 K, while a P-31 enhancement of 160 is achieved via the Overhauser effect for triphenylphosphine using the monoradical BDPA under solution NMR conditions at room temperature. The latter result is the first demonstration of Overhauser DNP in the solution state at a field of 14.1 T (H-1 600 MHz). Moreover these results have been produced with large sample volumes (similar to 100 mu L, i.e. 3 mm diameter NMR tubes). (C) 2018 Elsevier Inc. All rights reserved.
机译:核磁共振(NMR)是一种本质不敏感的技术,具有核旋转状态的Boltzmann分布,在传统磁场的百万分别的阶段。为了克服这种限制,可以使用动态核偏振(DNP)在信号增强中获得最多三个级数,这可以将实验时间降低到六个数量级。在DNP实验中,通过微波辐射将相对较大的电子偏振转移到NMR活性核来提高核自旋极化。在这里,我们描述了准光学系统的设计和性能,使得使用单个395GHz陀螺微波源同时执行DNP实验,在两种不同的14.1 T(H-1 600MHz)NMR光谱仪中:配置为魔角纺丝(MAS)固态NMR;另一个配置用于解决方案状态NMR实验。特别地,我们描述了如何在两个光谱仪之间分开,传输和操纵高功率微波光束。通过在110k的MAS-DNP条件下,通过丙氨酸的横向效果来实现128的C-13增强,而使用单更像磷酸三苯基膦对160的P-31增强,实现了160的P-31增强BDPA在溶液NMR条件下在室温下。后一种结果是在14.1t(H-1 600MHz)的溶液状态下的溶液状态的第一展示。此外,这些结果已经用大样品体积(类似于100μl,即直径3mm的NMR管)产生。 (c)2018年Elsevier Inc.保留所有权利。

著录项

  • 来源
    《Journal of magnetic resonance》 |2018年第2018期|共10页
  • 作者单位

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Thomas Keating Ltd Stn Mills Daux Rd Billinghurst RH14 9SH W Sussex England;

    Thomas Keating Ltd Stn Mills Daux Rd Billinghurst RH14 9SH W Sussex England;

    Thomas Keating Ltd Stn Mills Daux Rd Billinghurst RH14 9SH W Sussex England;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

    Natl High Magnet Field Lab 1800 E Paul Dirac Dr Tallahassee FL 32310 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O82.532;
  • 关键词

    Dynamic nuclear polarization; DNP; Overhauser DNP; Liquid DNP;

    机译:动态核极化;DNP;overhauser DNP;液体DNP;

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