首页> 外文期刊>The Journal of Organic Chemistry >Atropisomerization in N-aryl-2(1H)-pyrimidin-(thi)ones: A ring-opening/rotation/ring-closure process in place of a classical rotation around the pivot bond
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Atropisomerization in N-aryl-2(1H)-pyrimidin-(thi)ones: A ring-opening/rotation/ring-closure process in place of a classical rotation around the pivot bond

机译:N-芳基-2(1H)-嘧啶-(thi)ones中的阻转异构:开环/旋转/闭环过程代替围绕枢轴键的经典旋转

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Uncatalyzed racemization processes in atropisomeric diphenyl-like frameworks are classically described as the result of the rotation around the pivotal single bond linking two planar frameworks. Severe constraints leading to more or less distorted transition states account for the experimental barrier to atropenantiomerization. In 1988, one of us hypothesized that, in N-aryl-2(1H)-pyrimidin-(thi)ones, a ring-opening/ring-closure process was contributing to the observed racemization process accounting for the lower barriers in the sulfur analogues than in oxygen analogues. Now, a series of six novel 6-amino-5-cyano-1,4-disubstituted-2(1H)-pyrimidinones 5a-5f and two 6-amino-5-cyano-4-p-tolyl-1-substituted-2(1H)-pyrimidinethiones 6a and 6b were synthesized and characterized through spectroscopic and X-ray diffraction studies. Semipreparative HPLC chiral separation was achieved, and enantiomerization barriers were obtained by thermal racemization. The rotational barriers of 6-amino-5-cyano-1-o-tolyl-4-p-tolyl-2(1H)-pyrimidinone (5b) and 6-amino-5-cyano-1-(naphthalen-1-yl)-4-p-tolyl-2(1H)-pyrimidinone (5e) were found to be 120.4 and 125.1 kJ·mol~(-1) (n-BuOH, 117 C), respectively, and those of the corresponding thiones were 116.8 and 109.6 kJ·mol ~(-1) (EtOH, 78 C), respectively. DFT calculations of the rotational barriers clearly ruled out the classical rotation around the pivotal bond with distorted transition states in the case of the sulfur derivatives. Instead, the ranking of the experimental barriers (sulfur versus oxygen, and o-tolyl versus 1-naphthyl in both series) was nicely reproduced by calculations when the rotation occurred via a ring-opened form in N-aryl-2(1H)-pyrimidinethiones.
机译:阻转异构二苯基样骨架中未催化的消旋外消旋过程被经典地描述为围绕连接两个平面骨架的枢轴单键旋转的结果。导致或多或少扭曲的过渡态的严格约束解释了对阻转对映异构作用的实验障碍。 1988年,我们中的一个人假设,在N-芳基-2(1H)-嘧啶-(thi)ones中,开环/闭环过程有助于观察到的消旋过程,这解释了硫中较低的障碍类似物比氧气类似物。现在,一系列六个新的6-氨基-5-氰基-1,4-二取代-2(1H)-嘧啶酮5a-5f和两个6-氨基-5-氰基-4-对甲苯基-1-取代-合成了2(1H)-嘧啶硫酮6a和6b,并通过光谱和X射线衍射研究对其进行了表征。实现了半制备型HPLC手性分离,并通过热消旋获得了对映异构化障碍。 6-氨基-5-氰基-1-邻甲苯基-4-对甲苯基-2(1H)-嘧啶酮(5b)和6-氨基-5-氰基-1-(萘-1-基)的旋转势垒)-4-对甲苯基-2(1H)-嘧啶酮(5e)分别为120.4 kJ·mol〜(-1)(n-BuOH,117 C),相应的硫酮为分别为116.8和109.6 kJ·mol〜(-1)(EtOH,78 C)。在硫衍生物的情况下,旋转壁垒的DFT计算清楚地排除了绕着枢轴键的经典旋转,过渡态扭曲了。取而代之的是,当旋转通过开环形式在N-aryl-2(1H)-中发生时,通过计算可以很好地重现实验势垒的排名(两个系列中的硫与氧,以及邻甲苯基与1-萘基)嘧啶硫酮。

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