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首页> 外文期刊>The Journal of Organic Chemistry >Tunable Push-Pull Interactions in 5-Nitrosopyrimidines
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Tunable Push-Pull Interactions in 5-Nitrosopyrimidines

机译:5-亚硝基嘧啶中的可调推挽相互作用

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摘要

The effect of push-pull interactions in a series of variously substituted 5-nitrosopyrimidines on the strength of intramolecular hydrogen bonds, the height of rotational barriers around formally single bonds, UV-vis spectra and electrochemical behavior is explored. Intramolecular charge transfer (ICT) leads to a shift of electron density from electron-donating substituents, which is readily observable by NMR spectroscopy. The 5-nitroso group is able to form strong intramolecular hydrogen bonds with neighboring amino substituents. As a result, two rotamers with reversed orientation of the 5-nitroso group are observed for compounds with two different hydrogen-bond donors in neighboring positions. The barriers of interconversion between the two rotamers are strongly influenced by ICT, whereas the ratio of such rotamers depends primarily on the character of the hydrogen-bond donors. The ICT also significantly affects the position of UV-vis absorption maxima, which can be tuned in a broad range of 100 nm by the selection of appropriate substituents. Finally, ICT influences oxidation potential of the 5-nitrosopyrimidines and the stability of the resulting nitroso radical cations, the structures of which are determined by EPR spectroscopy.
机译:探索了一系列不同取代的5-亚硝基嘧啶中推拉相互作用对分子内氢键强度,形式单键周围旋转势垒高度,UV-可见光谱和电化学行为的影响。分子内电荷转移(ICT)导致电子密度从给电子取代基转移,这很容易通过NMR光谱观察到。 5-亚硝基能够与相邻的氨基取代基形成牢固的分子内氢键。结果,对于在相邻位置具有两个不同氢键供体的化合物,观察到了具有5-亚硝基反向取向的两个旋转异构体。两种旋转异构体之间相互转化的障碍受到ICT的强烈影响,而这种旋转异构体的比例主要取决于氢键供体的特性。 ICT还会显着影响UV-vis吸收最大值的位置,可通过选择合适的取代基在100 nm的宽范围内进行调整。最后,ICT影响5-亚硝基嘧啶的氧化电位和所得亚硝基自由基阳离子的稳定性,其结构由EPR光谱法确定。

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