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首页> 外文期刊>Applied Magnetic Resonance >An Apparatus for Production of Isotopically and Spin-Enriched Hydrogen for Induced Polarization Studies
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An Apparatus for Production of Isotopically and Spin-Enriched Hydrogen for Induced Polarization Studies

机译:用于诱导极化研究的同位素和自旋富氢生产装置

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An apparatus for the production of hydrogen for hydrogenation-induced polarization studies was developed. The apparatus provides hydrogen gas from a solid source, thereby simplifying the requirement for siting of the apparatus. The produced hydrogen can be either isotopically enriched (with deuterium) or spin-enriched (with parahydrogen). These specialty gases were produced at small predetermined quantities and ambient pressure. The properties of the hydrogen mixtures were characterized by gas-phase nuclear magnetic resonance. The T 1 of the hydrogen mixtures (3.7 ms) was not affected by para-enrichment. The line width of the hydrogen signal in the para-enriched mixture was 34% larger. The reaction of ethyl propiolate hydrogenation served to evaluate the performance in terms of the ability to create hyperpolarized states. In this reaction, a polarization of 11.2% was measured for protons. Consecutive alkene hydrogenations as well as hydrogenations of the catalyst ligand resulted in additional hyperpolarized signals which were systematically assigned.
机译:开发了用于氢化诱导的极化研究的生产氢气的设备。该设备从固体源提供氢气,从而简化了对设备选址的要求。产生的氢可以同位素富集(氘)或自旋富集(对氢)。这些特殊气体以预定的少量和环境压力产生。氢混合物的性质通过气相核磁共振表征。氢混合物的T 1 (3.7毫秒)不受对位富集的影响。对位富集混合物中氢信号的线宽大34%。丙酸乙酯氢化反应用于评估产生超极化态的能力。在该反应中,测得质子的极化为11.2%。连续的烯烃加氢以及催化剂配体的加氢导致另外的超极化信号被系统地分配。

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