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首页> 外文期刊>Journal of magnetic resonance >Modular, triple-resonance, transmission line DNP MAS probe for 500 MHz/330 GHz
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Modular, triple-resonance, transmission line DNP MAS probe for 500 MHz/330 GHz

机译:模块化,三重谐振,输电线DNP MAS探头500 MHz / 330 GHz

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We describe the design and construction of a modular, triple-resonance, fully balanced, DNP-MAS probe based on transmission line technology and its integration into a 500 MHz/330 GHz DNP-NMR spectrometer. A novel quantitative probe design and characterization strategy is developed and employed to achieve optimal sensitivity, RF homogeneity and excellent isolation between channels. The resulting three channel HCN probe has a modular design with each individual, swappable module being equipped with connectorized, transmission line ports. This strategy permits attachment of a mating connector that facilitates accurate impedance measurements at these ports and allows characterization and adjustment (e.g. for balancing or tuning/matching) of each component individually. The RF performance of the probe is excellent; for example, the C-13 channel attains a Rabi frequency of 280 kHz for a 3.2 mm rotor. In addition, a frequency tunable 330 GHz gyrotron operating at the second harmonic of the electron cyclotron frequency was developed for DNP applications. Careful alignment of the corrugated waveguide led to minimal loss of the microwave power, and an enhancement factor epsilon = 180 was achieved for U-C-13 urea in the glassy matrix at 80 K. We demonstrated the operation of the system with acquisition of multidimensional spectra of cross-linked lysozyme crystals which are insoluble in glycerol-water mixtures used for DNP and samples of RNA. (C) 2019 Elsevier Inc. All rights reserved.
机译:我们描述了基于传输线技术的模块化,三谐振,全平衡,DNP-MAS探针的设计和构造,并将其集成到500MHz / 330GHz DNP-NMR光谱仪中。开发了一种新的定量探测设计和表征策略,并采用了最佳的灵敏度,RF均匀性和渠道之间的优异隔离。由此产生的三个通道HCN探头具有模块化设计,每个单独的可交换模块配备有连接器,传输线路端口。该策略允许附接配合连接器,其便于在这些端口处提供准确的阻抗测量,并且允许单独地表征和调整(例如用于平衡或调谐/匹配)。探头的RF性能优异;例如,C-13通道达到3.2mm转子的Rabi频率为280kHz。另外,为DNP应用开发了在电子回火频率的第二次谐波处操作的频率可调330GHz戈罗龙。纹状波导的仔细对准导致微波功率的最小损失,并且在80k的玻璃状基质中对UC-13尿素进行增强因子ePssilon = 180。我们证明了系统的运行,获取了多维谱交联溶菌酶晶体,其不溶于用于DNP和RNA样品的甘油 - 水混合物。 (c)2019 Elsevier Inc.保留所有权利。

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