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首页> 外文期刊>Molecules >Deuterium Isotope Effects on 13C-NMR Chemical Shifts of 10-Hydroxybenzo[h]quinolines
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Deuterium Isotope Effects on 13C-NMR Chemical Shifts of 10-Hydroxybenzo[h]quinolines

机译:氘同位素对10-羟基苯并[h]喹啉的 13 C-NMR化学位移的影响

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Deuterium isotope effects on 13C-NMR chemical shifts are investigated in a series of 10-hydroxybenzo[h]quinolines (HBQ’s) The OH proton is deuteriated. The isotope effects on 13C chemical shifts in these hydrogen bonded systems are rather unusual. The formal four-bond effects are found to be negative, indicating transmission via the hydrogen bond. In addition unusual long-range effects are seen. Structures, NMR chemical shifts and changes in nuclear shieldings upon deuteriation are calculated using DFT methods. Two-bond deuterium isotope effects on 13C chemical shifts are correlated with calculated OH stretching frequencies. Isotope effects on chemical shifts are calculated for systems with OH exchanged by OD. Hydrogen bond potentials are discussed. New and more soluble nitro derivatives are synthesized.
机译:在一系列10-羟基苯并[h]喹啉(HBQ's)中,研究了氘同位素对 13 C-NMR化学位移的影响。在这些氢键系统中,同位素对 13 C化学位移的影响非常罕见。发现正式的四键效应为负,表明通过氢键传递。此外,还可以看到异常的远程效果。氘化后的结构,NMR化学位移和核屏蔽层的变化使用DFT方法计算。双键氘同位素对 13 C化学位移的影响与所计算的OH拉伸频率相关。对于通过OD交换OH的系统,计算了同位素对化学位移的影响。氢键势进行了讨论。合成了新的和更可溶的硝基衍生物。

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