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Dynamic nuclear polarization at 9T using a novel 250GHz gyrotron microwave source

机译:使用新型250GHz旋回微波源在9T下进行动态核极化

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摘要

In this communication, we report enhancements of nuclear spin polarization by dynamic nuclear polarization (DNP) in static and spinning solids at a magnetic field strength of 9T (250 GHz for g = 2 electrons, 380 MHz for 1H). In these experiments, 1H enhancements of up to 170 ± 50 have been observed in 1-13C-glycine dispersed in a 60:40 glycerol/water matrix at temperatures of 20 K; in addition, we have observed significant enhancements in 15N spectra of unoriented pf1-bacteriophage. Finally, enhancements of ~17 have been obtained in two-dimensional 13C–13C chemical shift correlation spectra of the amino acid U-13C, 15N-proline during magic angle spinning (MAS), demonstrating the stability of the DNP experiment for sustained acquisition and for quantitative experiments incorporating dipolar recoupling. In all cases, we have exploited the thermal mixing DNP mechanism with the nitroxide radical 4-amino-TEMPO as the paramagnetic dopant. These are the highest frequency DNP experiments performed to date and indicate that significant signal enhancements can be realized using the thermal mixing mechanism even at elevated magnetic fields. In large measure, this is due to the high microwave power output of the 250 GHz gyrotron oscillator used in these experiments.
机译:在本通讯中,我们报告了在9T的磁场强度(g = 2个电子为250 GHz, 1 为380 MHz)的磁场强度下,动态和静态固体中的动态核极化(DNP)增强了核自旋极化。 H)。在这些实验中,在60:40甘油/水基质中分散的1- 13 C-甘氨酸中,观察到 1 H最多可提高170±50。 20 K;此外,我们观察到未定向的pf1噬菌体的 15 N光谱显着增强。最后,在氨基酸U- 13 的二维 13 C– 13 C化学位移相关光谱中获得了〜17的增强C, 15 N-脯氨酸在魔角旋转(MAS)过程中,证明了DNP实验在持续采集和结合偶极耦合的定量实验中的稳定性。在所有情况下,我们都利用了以氮自由基4-氨基-TEMPO为顺磁性掺杂剂的热混合DNP机制。这些是迄今为止执行的最高频率DNP实验,表明即使在磁场增强的情况下,使用热混合机制也可以实现明显的信号增强。在很大程度上,这是由于这些实验中使用的250 GHz回旋振荡器的微波输出功率高。

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