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Optimizing the Polarization Matrix for ex Situ Dynamic Nuclear Polarization

机译:为非原位动态核极化优化极化矩阵

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摘要

Although recent advances in dynamic nuclear polarization techniques have boosted the otherwise low sensitivity of NMR spectroscopy, the efficiency of the hyperpolarization process depends on the composition of the polarization matrix, in particular on the contact between the radical and the target molecule and the capability of the matrix to transfer polarization through spin diffusion. A concept for optimal matrix design is presented, applied to obtain two-dimensional heterocorrelated spectra of small drug-like molecules in 1−2 min after 90 min of hyperpolarization.
机译:尽管动态核极化技术的最新进展提高了NMR光谱原本较低的灵敏度,但超极化过程的效率取决于极化基质的组成,尤其取决于自由基与目标分子之间的接触以及分子的能力。通过自旋扩散转移极化的基质。提出了优化矩阵设计的概念,将其应用于在超极化90分钟后的1-2分钟内获得小药物样分子的二维异相关光谱。

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