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Predicting PSR Filters by Transverse Relaxation Enhancements

机译:通过横向弛豫增强来预测PSR滤波器

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The paramagnetic spin relaxation (PSR) filter allows the suppression of the NMR resonances of individual components in mixtures according to their Gd3+-complexing ability. The difficulty in predicting this property hampers, however, the widespread application of this filter. Herein we describe that the PSR filter is dominated by the transverse relaxation enhancement (R-2p) experienced by nuclei in the presence of Gd3+, so that R-2p represents a reliable predictive tool of suppression in the 1D and 2D PSR filter of complex mixtures. The robustness of R-2p as a predictive tool in PSR filters has been demonstrated at different magnetic fields and for the H-1, C-13, COSY, and HMQC filtering of commercial multicomponent compositions, including beverages and drugs.
机译:顺磁性自旋弛豫(PSR)过滤器可以根据混合物中Gd3 +的复合能力抑制混合物中各个成分的NMR共振。然而,难以预测该特性会阻碍该滤波器的广泛应用。本文中,我们描述了PSR过滤器主要受存在Gd3 +时原子核经历的横向弛豫增强(R-2p)的控制,因此R-2p代表了可靠的抑制复杂混合物的1D和2D PSR过滤器的预测工具。 R-2p作为PSR过滤器中的预测工具的鲁棒性已在不同的磁场下得到了证明,并且可用于商业多组分组合物(包括饮料和药品)的H-1,C-13,COSY和HMQC过滤。

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