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首页> 外文期刊>Journal of natural products >Long-range H-1-N-15 heteronuclear shift correlation at natural abundance[Review]
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Long-range H-1-N-15 heteronuclear shift correlation at natural abundance[Review]

机译:自然丰度下的远程H-1-N-15异核位移相关性[综述]

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摘要

Despite the inherently low sensitivity of N-15 NMR because of its low gyromagnetic ratio (gamma(N)) and its relatively low natural abundance (0.37%), this important nuclide still has useful potential as a structural probe even at natural abundance. Inverse-detected NMR methods coupled with major advances in NMR probe designs have made it possible to acquire long-range H-1-N-15 heteronuclear shift correlation data on samples as small as a micromole overnight. Chemical shift, referencing schemes for N-15 and the range of N-15 shifts are discussed, followed by a discussion of the currently available pulse sequences, pulse calibration, parametrization and processing of long-range H-1-N-15 data, and the implications of probe selection. These topics are followed by a review of the applications contained in the literature that have utilized H-1-N-15 heteronuclear shift correlation experiments at natural abundance, with emphasis placed on the observed long-range coupling pathways.
机译:尽管由于N-15 NMR的低旋磁比(γ(N))和相对较低的自然丰度(0.37%),其固有的低灵敏度,但即使在自然丰度下,这种重要的核素仍具有作为结构探针的有用潜力。反向检测NMR方法与NMR探针设计的重大进展相结合,使得有可能在一夜之间从小分子样品中获得远距离H-1-N-15异核位移相关数据。讨论了化学位移,N-15的参考方案和N-15的范围,然后讨论了当前可用的脉冲序列,脉冲校准,远程H-1-N-15数据的参数化和处理,以及探针选择的含义。在这些主题之后,回顾了文献中包含的应用,这些应用在自然丰度下利用了H-1-N-15异核移位相关性实验,重点放在观察到的远程耦合途径上。

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