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固态 NMR 的 14.1T 下的动态核极化实验。

Dynamic nuclear polarization experiments at 14.1 T for solid-state NMR.

机构信息

Institute for Protein Research, Osaka University, 3-2 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

Phys Chem Chem Phys. 2010 Jun 14;12(22):5799-803. doi: 10.1039/c002268c.

Abstract

Instrumentation for high-field dynamic nuclear polarization (DNP) at 14.1 T was developed to enhance the nuclear polarization for NMR of solids. The gyrotron generated 394.5 GHz submillimeter (sub-mm) wave with a power of 40 W in the second harmonic TE(0,6) mode. The sub-mm wave with a power of 0.5-3 W was transmitted to the sample in a low-temperature DNP-NMR probe with a smooth-wall circular waveguide system. The (1)H polarization enhancement factor of up to about 10 was observed for a (13)C-labeled compound with nitroxyl biradical TOTAPOL. The DNP enhancement was confirmed by the static magnetic field dependence of the NMR signal amplitude at 90 K. Improvements of the high-field DNP experiments are discussed.

摘要

研制了用于 14.1T 下高场动态核极化(DNP)的仪器,以增强固体 NMR 的核极化。回旋管在二次谐波 TE(0,6)模式下产生 394.5GHz 亚毫米波,功率为 40W。功率为 0.5-3W 的亚毫米波通过低温 DNP-NMR 探头中的光滑壁圆形波导系统传输到样品中。用氮氧自由基双自由基 TOTAPOL 标记的(13)C 标记化合物观察到高达约 10 的(1)H 极化增强因子。在 90K 时通过 NMR 信号幅度对静态磁场的依赖性证实了 DNP 增强。讨论了改进高场 DNP 实验的方法。

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