Detecting Organic Nitrogen with 1H-15N HMBC Spectra

Haw-Lih Su, Rajeesha Rajan, Y. Hijji, Mohammad Ibrahim Ahmad Ibrahim, Mohammed Alsafran
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Abstract

NMR spectroscopy has been the most important tool for organic chemistry research, providing detailed structure information. While 1H and 13C NMR spectra were frequently measured, 15N NMR spectra were relatively rare, even though nitrogen is commonly observed in organic molecules. This is due to the low gyromagnetic ratio and nature abundance. Usually 15N NMR spectra are observed when the sample is in very high concentration or the nitrogen is enriched with 15N isotope. HMBC is one of the 2D NMR techniques, measuring the through-bond correlations inside a molecule. 1H-15N HMBC actually collects a series of measurements of 1H NMR spectra with 15N information. Therefore, HMBC could get stronger signals than 15N signals and provide the opportunity for the indirect measurement of 15N signals.
用1H-15N HMBC光谱检测有机氮
核磁共振波谱是有机化学研究中最重要的工具,可以提供详细的结构信息。虽然经常测量1H和13C核磁共振波谱,但15N核磁共振波谱相对较少,尽管氮在有机分子中很常见。这是由于低回旋磁比和自然丰度。通常在样品浓度很高或氮被15N同位素富集时观察到15N核磁共振谱。HMBC是一种二维核磁共振技术,测量分子内部的通键相关性。1H-15N HMBC实际上收集了一系列带有15N信息的1H NMR光谱测量值。因此,HMBC可以获得比15N信号更强的信号,为间接测量15N信号提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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