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首页> 外文期刊>Journal of magnetic resonance >Nuclear spin hyperpolarization of the solvent using signal amplification by reversible exchange (SABRE)
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Nuclear spin hyperpolarization of the solvent using signal amplification by reversible exchange (SABRE)

机译:通过可逆交换(SABRE)进行信号放大,溶剂的核自旋超极化

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摘要

Here we report the polarization of the solvent OH protons by SABRE using standard iridium-based catalysts under slightly acidic conditions. Solvent polarization was observed in the presence of a variety of structurally similar N-donor substrates while no solvent enhancement was observed in the absence of substrate or para-hydrogen (p-H-2). Solvent polarization was sensitive to the polarizing field and catalyst: substrate ratio in a manner similar to that of substrate protons. SABRE experiments with pyridine-d(5) suggest a mechanism where hyperpolarization is transferred from the free substrate to the solvent by chemical exchange while measured hyperpolarization decay times suggest a complimentary mechanism which occurs by direct coordination of the solvent to the catalytic complex. We found the solvent hyperpolarization to decay nearly 3 times more slowly than its characteristic spin-lattice relaxation time suggesting that the hyperpolarized state of the solvent may be sufficiently long lived (similar to 20 s) to hyperpolarize biomolecules having exchangeable protons. This route may offer future opportunities for SABRE to impact metabolic imaging. (C) 2015 Elsevier Inc. All rights reserved.
机译:在这里,我们报告了在轻微酸性条件下,使用标准铱基催化剂通过SABER对溶剂OH质子的极化。在存在各种结构相似的N供体底物的情况下观察到溶剂极化,而在不存在底物或对氢(p-H-2)的情况下未观察到溶剂增强。溶剂极化对极化场和催化剂:底物的比率敏感,其方式类似于底物质子。 SABER实验用吡啶-d(5)提出了一种机制,其中通过化学交换将超极化作用从游离底物转移至溶剂,而测得的超极化衰减时间则表明了一种互补的机制,该作用是通过溶剂与催化配合物的直接配位而发生的。我们发现溶剂的超极化比其特有的自旋晶格弛豫时间衰减近3倍,这表明溶剂的超极化状态可能寿命足够长(类似于20 s),从而使具有可交换质子的生物分子超极化。这条路线可能为SABER影响代谢成像提供未来机会。 (C)2015 Elsevier Inc.保留所有权利。

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