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Determination of the enol form of asymmetric 1,3-dicarbonyl compounds: 2D HMBC NMR data and DFT calculations

机译:不对称1,3-二羰基化合物的烯醇形式的测定:二维HMBC NMR数据和DFT计算

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In this study, a series of asymmetric aryl 1,3-dicarbonyl compounds were synthesized and their enol forms were observed via experimental data and theoretical calculations. According to the 1H- and 13C-NMR results, all the investigated compounds were found as a single enol form in CDCl3 solution. Moreover, their HMBC spectra were applied to identify the observed enol forms and correlations between certain protons and carbon atoms were considered. The dihedral angles of the asymmetric compounds that have aryl units on both sides were calculated by DFT to understand the reason for the observed enol forms. Small dihedral angles caused longer conjugation, resulting in more stable compounds and it was found that the observed enol forms were based on small dihedral angles, namely, resonance is the driving force. Furthermore, the compounds possessing both aryl and alkyl moieties prefer the enol form towards the aromatic ring side due to longer conjugation.
机译:在这项研究中,合成了一系列不对称的芳基1,3-二羰基化合物,并通过实验数据和理论计算观察了它们的烯醇形式。根据1H和13C-NMR结果,所有研究的化合物均以单烯醇形式存在于CDCl3溶液中。此外,他们的HMBC光谱用于识别观察到的烯醇形式,并考虑了某些质子和碳原子之间的相关性。通过DFT计算两侧均具有芳基单元的不对称化合物的二面角,以了解观察到的烯醇形式的原因。小二面角导致更长的共轭,导致更稳定的化合物,并且发现观察到的烯醇形式基于小二面角,即共振是驱动力。此外,由于具有更长的缀合,同时具有芳基和烷基基团的化合物优选朝着芳环侧的烯醇形式。

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