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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Generalizing, Extending, and Maximizing Nitrogen-15 Hyperpolarization Induced by Parahydrogen in Reversible Exchange
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Generalizing, Extending, and Maximizing Nitrogen-15 Hyperpolarization Induced by Parahydrogen in Reversible Exchange

机译:在可逆交换中通过戊二原引起的氮气-15氮素诱导的透明,延伸和最大化

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摘要

Signal Amplification by Reversible Exchange (SABRE) is a fast and convenient NMR hyperpolarization method that uses cheap and readily available para-hydrogen as a hyperpolarization source. SABRE can hyperpolarize protons and heteronuclei. Here we focus on the heteronuclear variant introduced as SABRE-SHEATH (SABRE in SHield Enables Alignment Transfer to Heteronuclei) and nitrogen-15 targets in particular. We show that N-15-SABRE works more efficiently and on a wider range of substrates than H-1-SABRE, greatly generalizing the SABRE approach. In addition, we show that nitrogen-1s offers significantly extended T-1 times of up to 12 minutes. Long T-1 times enable higher hyperpolarization levels but also hold the promise of hyperpolarized molecular imaging for several tens of minutes. Detailed characterization and optimization are presented, leading to nitrogen-15 polarization'evels in excess of 10% on several compounds.
机译:可逆交换(SABER)的信号放大是一种快速而方便的NMR超极化方法,其使用廉价且容易获得的对氢作为超极化源。 SABER可以超极化质子和杂核核糖。 在这里,我们专注于由于Saber-Sheath(Saill中的Saber能够使转移到杂核)和氮-15靶标的异种核变异。 我们展示了N-15-Saber更有效地工作,并且在更广泛的基板上比H-1-1-1-1-1-1-1-leaber在一起,极大地概括了Sabre方法。 此外,我们表明氮气1s提供明显延伸的T-1次,最多12分钟。 长T-1次使高超极化水平较高,但也保持了超极化分子成像的承诺几十分钟。 提出了详细的表征和优化,导致几种化合物超过10%的氮-15极化。

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