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TinyPols a family of water-soluble binitroxides tailored for dynamic nuclear polarization enhanced NMR spectroscopy at 18.8 and 21.1 T

机译:Tinypols在18.8和21.1 T中针对动态核偏振量的水溶性二分子系列量身定制的水溶性二分醛系列。

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Dynamic Nuclear Polarization (DNP) has recently emerged as a key method to increase the sensitivity of solid-state NMR spectroscopy under Magic Angle Spinning (MAS). While efficient binitroxide polarizing agents such as AMUPol have been developed for MAS DNP NMR at magnetic fields up to 9.4 T, their performance drops rapidly at higher fields due to the unfavorable field dependence of the cross-effect (CE) mechanism and AMUPol-like radicals were so far disregarded in the context of the development of polarizing agents for very high-field DNP. Here, we introduce a new family of water-soluble binitroxides, dubbed TinyPols, which have a three-bond non-conjugated flexible amine linker allowing sizable couplings between the two unpaired electrons. We show that this adjustment of the linker is crucial and leads to unexpectedly high DNP enhancement factors at 18.8 T and 21.1 T: an improvement of about a factor 2 compared to AMUPol is reported for spinning frequencies ranging from 5 to 40 kHz, with ε _(H) of up to 90 at 18.8 T and 38 at 21.1 T for the best radical in this series, which are the highest MAS DNP enhancements measured so far in aqueous solutions at these magnetic fields. This work not only breathes a new momentum into the design of binitroxides tailored towards high magnetic fields, but also is expected to push the application frontiers of high-resolution DNP MAS NMR, as demonstrated here on a hybrid mesostructured silica material.
机译:最近被出现为在魔法角纺(MAS)下提高固态NMR光谱敏感性的关键方法的动态核偏振(DNP)。虽然已经为MAS DNP NMR开发了高达9.4 T的MAS DNP NMR的有效二氮杂氧化物偏振剂,但由于跨效应(CE)机制和amupol样基团的不利场依赖性,它们的性能在更高的领域下降迅速下降到目前为止,在非常高场DNP的偏振剂的发展的背景下忽略了。在这里,我们介绍了一种新的水溶性二氮氧化物系列,具有三键的非共轭柔性胺接头,允许两个未配对的电子之间的可相同的联轴器。我们表明,接头的这种调整至关重要,导致18.8 T和21.1 T的意外高DNP增强因子:与Amupol相比,对于从5到40 kHz的旋转频率,据报道,大约2系数2的改善,ε_ (h)在18.8吨和38℃下高达90,在本系列中最佳自由基为38.8,这是迄今为止在这些磁场的水溶液中测量的最高MAS DNP增强功能。这项工作不仅呼吸到为高磁场量身定制的二氧化二尼葡萄酒设计的新动力,而且还预计将推动高分辨率DNP MAS NMR的应用前方,如同杂交型二氧化硅材料上所示。

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