首页> 外文期刊>The Journal of Organic Chemistry >Atropisomerism about Aryl?Csp~3 Bonds: The Electronic and Steric Influence of ortho-Substituents on Conformational Exchange in Cannabidiol and Linderatin Derivatives
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Atropisomerism about Aryl?Csp~3 Bonds: The Electronic and Steric Influence of ortho-Substituents on Conformational Exchange in Cannabidiol and Linderatin Derivatives

机译:关于芳基?Csp〜3键的对映异构:邻位取代基对大麻二酚和Linderatin衍生物构象交换的电子和立体影响

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Terpenylation reactions of substituted phenols were used to prepare cannabidiol and linderatin derivatives, and their structure and conformational behavior in solution were investigated by NMR and, for some representative examples, by DFT. VT-NMR spectra and DFT calculations were used to determine the activation energies of the conformational change arising from restricted rotation about the aryl? Csp~3 bond that lead to two unequally populated rotameric epimers. The NBO calculation was applied to explain the electronic stabilization of one conformer over another by donor?acceptor charge transfer interactions. Conformational control arises from a combination of stereoelectronic and steric effects between substituents in close contact with each other on the two rings of the endocyclic epoxide atropisomers. This study represents the first exploration of the stereoelectronic origins of atropisomerism around C(sp~2)?C(sp~3) single bonds through theoretical calculations.
机译:取代酚的萜烯化反应用于制备大麻二酚和麦角抑素衍生物,其溶液的结构和构象行为通过NMR进行了研究,对于一些代表性实例,通过DFT进行了研究。 VT-NMR光谱和DFT计算被用来确定由于绕芳基的旋转受限而引起的构象变化的活化能。 Csp〜3键导致两个不均等的旋转异构差向异构体。 NBO计算被用来解释通过供体-受体电荷转移相互作用,一个构象体对另一个构象体的电子稳定性。构象控制源于在环内环氧化物阻转异构体的两个环上彼此紧密接触的取代基之间的立体电子和空间效应的组合。这项研究代表了通过理论计算对C(sp〜2)?C(sp〜3)单键周围的对映异构的立体电子起源的首次探索。

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