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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Solid-State O-17 NMR Study of Carboxylic Acid Dimers: Simultaneously Accessing Spectral Properties of Low- and High-Energy Tautomers
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Solid-State O-17 NMR Study of Carboxylic Acid Dimers: Simultaneously Accessing Spectral Properties of Low- and High-Energy Tautomers

机译:羧酸二聚体的固态O-17 NMR研究:同时访问低能量互变异构体的光谱性能

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We report a solid-state O-17 NMR study of several crystalline carboxylic acids. We found that, while each of these compounds forms discrete hydrogen-bonded dimers in the crystal lattice, their solid-state O-17 magic-angle spinning (MAS) NMR spectra display quite different features and different temperature dependencies. We showed that experimentally observed O-17 NMR spectral behaviors can be explained as being due to thermal averaging between the two tautomers that are produced as a result of concerted double-hydrogen hopping dynamics within each dimer. In general, the two tautomers have different energies due to intramolecular interactions and crystal packing. From an analysis of variable-temperature O-17 MAS NMR spectra, energy asymmetry between the two tautomers was experimentally determined for each of the carboxylic acid compounds studied. The same data analysis also offers an opportunity to simultaneously assess O-17 NMR parameters in both low- and high-energy tautomers. We concluded that the periodic plane-wave density functional theory (DFT) calculations can produce reliable O-17 NMR parameters (chemical shift and quadrupolar coupling tensors) for both tautomers. The same periodic DFT calculations have also produced reasonable energy asymmetry values for the studied carboxylic acid dimers. We have also observed substantial H/D isotope shifts in solid-state O-17 NMR.
机译:我们报告的几个结晶羧酸固态O型17 NMR研究。我们发现,虽然这些化合物的每晶格,其固态-O-17魔角旋转(MAS)NMR谱显示完全不同的特征和不同的温度依赖性形成离散的氢键键合的二聚体。我们发现,实验观察到的O型17 NMR光谱行为可以为由于所产生每个二聚体内协调一致双氢跳频动力学的结果在两个互变异构体之间的热平均来解释。一般情况下,这两个互变异构体具有由于分子内相互作用和晶体堆积不同的能量。从变温-O-17 MAS NMR光谱的分析,这两个互变异构体之间的能量不对称对于每个所研究的羧酸化合物的混合物实验确定。相同的数据分析还提供了一个机会,以在二者的低和高能量互变异构体同时评估O型17 NMR参数。我们的结论是,周期性平面波密度泛函理论(DFT)计算可以产生两个互变异构体可靠O型17 NMR参数(化学位移和四极耦合张量)。相同的周期DFT计算也产生合理能量不对称值用于所研究的羧酸的二聚体。我们还固态-O-17 NMR观察到实质性的H / d同位素移动。

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