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The Potential Utility of Predicted One Bond Carbon-Proton Coupling Constants in the Structure Elucidation of Small Organic Molecules by NMR Spectroscopy

机译:NMR光谱预测小有机分子结构中预测的一键碳-质子耦合常数的潜在效用

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摘要

NMR spectroscopy is the most popular technique used for structure elucidation of small organic molecules in solution, but incorrect structures are regularly reported. One-bond proton-carbon J-couplings provide additional information about chemical structure because they are determined by different features of molecular structure than are proton and carbon chemical shifts. However, these couplings are not routinely used to validate proposed structures because few software tools exist to predict them. This study assesses the accuracy of Density Functional Theory for predicting them using 396 published experimental observations from a diverse range of small organic molecules. With the B3LYP functional and the TZVP basis set, Density Functional Theory calculations using the open-source software package NWChem can predict one-bond CH J-couplings with good accuracy for most classes of small organic molecule. The root-mean-square deviation after correction is 1.5 Hz for most sp3 CH pairs and 1.9 Hz for sp2 pairs; larger errors are observed for sp3 pairs with multiple electronegative substituents and for sp pairs. These results suggest that prediction of one-bond CH J-couplings by Density Functional Theory is sufficiently accurate for structure validation. This will be of particular use in strained ring systems and heterocycles which have characteristic couplings and which pose challenges for structure elucidation.
机译:NMR光谱法是用于阐明溶液中有机小分子的最流行技术,但经常报告不正确的结构。单键质子-碳J耦合提供了有关化学结构的其他信息,因为它们是由与质子和碳化学位移不同的分子结构特征决定的。但是,由于很少有软件工具可以预测这些结构,因此这些耦合方法通常不用于验证提议的结构。这项研究使用396种已发表的来自各种有机小分子的实验观察结果评估了密度泛函理论预测它们的准确性。借助B3LYP功能和TZVP基础集,使用开源软件包NWChem进行的密度泛函理论计算可以预测大多数类型的有机小分子CH键的单键CH偶联。大多数sp 3 CH对校正后的均方根偏差为1.5 Hz,sp 2 对校正为1.9 Hz。对于具有多个带负电取代基的sp 3 对和sp对,观察到较大的误差。这些结果表明,通过密度泛函理论预测单键CH J耦合对于结构验证而言足够准确。这将在具有特征性偶联并对结构阐明提出挑战的应变环系统和杂环中特别有用。

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