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Optimization of dynamic nuclear polarization experiments in aqueous solution at 15 MHz/9.7 GHz: a comparative study with DNP at 140 MHz/94 GHz

机译:在15MHz / 9.7GHz的含水溶液中动态核偏振实验的优化:140MHz / 94 GHz的DNP对比研究

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摘要

Dynamic nuclear polarization is emerging as a potential tool to increase the sensitivity of NMR aiming at the detection of macromolecules in liquid solution. One possibility for such an experimental design is to perform the polarization step between electrons and nuclei at low magnetic fields and then transfer the sample to a higher field for NMR detection. In this case, an independent optimization of the polarizer and detection set ups is required. In the present paper we describe the optimization of a polarizer set up at 15 MHz ~1H NMR/9.7 GHz EPR frequencies based on commercial hardware. The sample consists of the nitroxide radical TEMPONE-D,~(15)N in water, for which the dimensions were systematically decreased to fit the homogeneous B region of a dielectric ENDOR resonator. With an available B1 microwave field up to 13 G we observe a maximum DNP enhancement of —170 at room temperature by irradiating on either one of the EPR lines. The DNP enhancement was saturated at all polarizer concentrations. Pulsed ELDOR experiments revealed that the saturation level of the two hyperfine lines is such that the DNP enhancements are well consistent with the coupling factors derived from NMRD data. By raising the polarizing field and frequencies 10-fold, i.e. to 140 MHz !H/94 GHz EPR, we reach an enhancement of —43 at microwave field strengths (B1 ≈ 5 G). The results are discussed in view of an application for a DNP spectrometer.
机译:动态核极化是潜在的工具,以提高旨在在液体溶液中检测大分子的NMR的敏感性。这种实验设计的一种可能性是在低磁场下在电子和核之间进行偏振步骤,然后将样品转移到更高的场上,用于NMR检测。在这种情况下,需要独立优化偏振器和检测组UPS。在本文中,我们描述了基于商业硬件的15 MHz〜1H NMR / 9.7 GHz EPR频率的偏振器的优化。样品由氮氧化物自由基Tempone-d,〜(15)n在水中,其系统地降低尺寸以适合电介质辅助谐振器的均匀B 区域。具有可用的B1微波场,高达13克,我们在室温下观察到-170的最大DNP增强,通过照射在epr线中的任何一个线上。 DNP增强在所有偏振器浓度下饱和。脉冲的Eldor实验表明,两个高血清线的饱和水平使得DNP增强能够与源自NMRD数据的耦合因子很好。通过提高极化场和频率10倍,即至140兆赫1 H / 94 GHz的EPR,我们在微波场强达到-43增强(B1≈5 G)。考虑到DNP光谱仪的应用讨论了结果。

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    Max Planck Institute for Biophysical Chemistry Am Fafiberg 11 37077 Gottingen Germany;

    Max Planck Institute for Biophysical Chemistry Am Fafiberg 11 37077 Gottingen Germany;

    Max Planck Institute for Biophysical Chemistry Am Fafiberg 11 37077 Gottingen Germany;

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  • 正文语种 eng
  • 中图分类 物理学;
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