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Bicorannulenyl: Stereochemistry of a C40H18 biaryl composed of two chiral bowls

机译:Bicorannulenyl:由两个手性碗组成的C40H18联芳基的立体化学

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The bicorannulenyl molecule is composed of two chiral bowls tethered by a single bond in a helical fashion. This simple combination of two chiral motifs gives rise to rich dynamic stereochemistry, where 12 conformers interconvert through bowl inversions and central bond rotation, and enantiomerizations occur via multistep processes. Interestingly, 8 out of 10 transition states are chiral, giving rise to mostly chiral enantiomerization pathways, where the molecule changes chirality without passing through an achiral conformation. However, analysis of the stereochemical landscape by DFT calculations and variable temperature NMR spectroscopy reveals that the energetically most favorable enantionterization pathway passes through one of the two achiral transition states. Single-crystal X-ray diffraction corroborates the DFT results and provides information on packing modes of bicorannulenyl molecules in the solid state that have not been seen previously for other buckybowls.
机译:联环戊烯基分子由两个手性碗组成,它们由一个单键以螺旋方式束缚。这两个手性基序的简单组合产生了丰富的动态立体化学,其中12个构象异构体通过碗反转和中心键旋转相互转化,对映异构通过多步过程发生。有趣的是,十个过渡状态中有八个是手性的,主要是手性对映异构化途径,分子在不经过非手性构象的情况下改变手性。但是,通过DFT计算和可变温度NMR光谱对立体化学图谱的分析表明,能量上最有利的对映体化途径通过了两个非手性过渡态之一。单晶X射线衍射证实了DFT的结果,并提供了关于固态双邻环戊烯基分子堆积模式的信息,而其他类型的Buckybowls以前从未见过这种信息。

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