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Generalizing, Extending, and Maximizing Nitrogen-15 Hyperpolarization Induced by Parahydrogen in Reversible Exchange
Journal article   Peer reviewed

Generalizing, Extending, and Maximizing Nitrogen-15 Hyperpolarization Induced by Parahydrogen in Reversible Exchange

Johannes F. P. Colell, Angus W. J. Logan, Zijian Zhou, Roman V. Shchepin, Danila A. Barskiy, Gerardo X. Ortiz, Qiu Wang, Steven J. Malcolmson, Eduard Y. Chekmenev, Warren S. Warren, …
Journal of physical chemistry. C, Vol.121(12), pp.6626-6634
2017-02-02
PMID: 28392884

Abstract

Chemistry Chemistry, Physical Materials Science, Multidisciplinary Nanoscience & Nanotechnology Science & Technology Science & Technology - Other Topics Materials Science Physical Sciences Technology
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.

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