首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Structural investigations of three triazines: solution-state NMR studies of internal rotation and structural information from solid-state NMR, plus a full structure determination from powder x-ray diffraction in one case
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Structural investigations of three triazines: solution-state NMR studies of internal rotation and structural information from solid-state NMR, plus a full structure determination from powder x-ray diffraction in one case

机译:三种三嗪的结构研究:内旋的固溶态NMR研究和固态NMR的结构信息,以及在一种情况下通过粉末X射线衍射确定的完整结构

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摘要

Three model 2,4,6-tris(amino)-1,3, 5-triazines, structurally related to a dyestuff molecule previously studied by NMR, were synthesized in order to enable the effects of rotamer exchange on the NMR spectra to be investigated in more detail. Two of the compounds are novel. Internal rotation of the triazine ring substituents was studied by variable-temperature solution-state H-1, C-13 and N-15 NMR spectroscopy. All the expected rotamers were detected for each molecule. Rotamer exchange rates varied from slow to fast over the temperature range -40 to 90degreesC, as observed for the dyestuff molecule itself. Solid-state C-13 and N-15 NMR provided information about the structures of the solid molecules. A full crystal structure determination from high-resolution powder x-ray diffraction was achieved for one of the molecules using simulated annealing techniques. Ab initio MO and N-15 NMR chemical shift calculations, based on energy-minimized structures derived from the x-ray structure determination, enabled the effect of intermolecular hydrogen bonding on the N-15 NMR chemical shifts to be studied. The results compared favourably with the experimental solid-state N-15 NMR shifts. Copyright (C) 2003 John Wiley Sons, Ltd. [References: 26]
机译:合成了三种与先前通过NMR研究的染料分子结构相关的2,4,6-三(氨基)-1,3,5-三嗪模型,以便能够研究旋转异构体对NMR光谱的影响更详细地。其中两种化合物是新颖的。通过温度可变的溶液状态H-1,C-13和N-15 NMR光谱研究了三嗪环取代基的内部旋转。每个分子均检测到所有预期的旋转异构体。如染料分子本身所观察到的,在-40至90℃的温度范围内,旋转子的交换速率从慢到快变化。固态C-13和N-15 NMR提供了有关固体分子结构的信息。使用模拟退火技术,通过一种分子的高分辨率粉末X射线衍射确定了完整的晶体结构。从头计算MO和N-15 NMR化学位移,基于从X射线结构测定得出的能量最小化结构,可以研究分子间氢键对N-15 NMR化学位移的影响。结果与实验性固态N-15 NMR位移相比具有优势。版权所有(C)2003 John Wiley Sons,Ltd. [参考:26]

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