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通过核超极化实现分子间¹H双量子核磁共振实验近10⁶倍的增强。

Nearly 10(6)-fold enhancements in intermolecular (1)H double-quantum NMR experiments by nuclear hyperpolarization.

作者信息

Mishkovsky Mor, Eliav Uzi, Navon Gil, Frydman Lucio

机构信息

Chemical Physics Department, Weizmann Institute, 76100 Rehovot, Israel.

出版信息

J Magn Reson. 2009 Sep;200(1):142-6. doi: 10.1016/j.jmr.2009.06.002. Epub 2009 Jun 6.

Abstract

Intermolecular Multiple-Quantum Coherences (iMQCs) can yield interesting NMR information of high potential usefulness in spectroscopy and imaging - provided their associated sensitivity limitations can be overcome. A recent study demonstrated that ex situ dynamic nuclear polarization (DNP) could assist in overcoming sensitivity problems for iMQC-based experiments on (13)C nuclei. In the present work we show that a similar approach is possible when targeting the protons of a hyperpolarized solvent. It was found that although the DNP procedure enhances single-quantum (1)H signals by about 600, which is significantly less than in optimized low-gamma liquid-state counterparts, the non-linear dependence of iMQC-derived signals on polarization can yield very large enhancements approaching 10(6). Cleary no practical amount of data averaging can match this kind of sensitivity gains. The fact that DNP endows iMQC-based (1)H NMR spectra with a sensitivity that amply exceeds that of their thermally polarized single-quantum counterpart, is confirmed in a number of simple single-scan 2D imaging experiments.

摘要

分子间多量子相干(iMQCs)能够产生在光谱学和成像方面具有高潜在用途的有趣核磁共振信息——前提是能够克服其相关的灵敏度限制。最近的一项研究表明,异位动态核极化(DNP)有助于克服基于iMQC的(13)C核实验中的灵敏度问题。在本工作中,我们表明,当以超极化溶剂的质子为目标时,类似的方法也是可行的。研究发现,虽然DNP过程使单量子(1)H信号增强约600倍,这明显低于优化后的低γ液态对应物,但iMQC衍生信号对极化的非线性依赖性可产生接近10(6)的非常大的增强。显然,任何实际的数据平均量都无法与这种灵敏度提升相匹配。在一些简单的单扫描二维成像实验中证实了这样一个事实,即DNP赋予基于iMQC的(1)H核磁共振谱的灵敏度大大超过其热极化单量子对应物的灵敏度。

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