首页> 外文期刊>Journal of chemical theory and computation: JCTC >Analysis of Optical Activity in Terms of Bonds and Lone-Pairs: The Exceptionally Large Optical Rotation of Norbornenone
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Analysis of Optical Activity in Terms of Bonds and Lone-Pairs: The Exceptionally Large Optical Rotation of Norbornenone

机译:根据键和孤对的旋光性分析:降冰片烯酮的超大旋光度

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Norbornenone, which has both a C=O and a C=C chromophore in a rigid bicyclic hydrocarbon framework, exhibits optical rotation (OR) an order of magnitude larger than that of similar molecules with only one of these chromophores (e.g., a-pinene). Its OR is also very sensitive to approximations in electronic structure calculations. The present study demonstrates a novel approach to interpret optical rotation using familiar concepts of chemical bonding, aided by first-principles calculations. A theoretical procedure is developed for analyzing the OR tensor components of a molecule in terms of individual bonds and lone pairs. The link between the chemist's bond and quantum mechanics is provided by localized molecular orbitals obtained from density functional theory (DFT) calculations. Deloalization of π orbitals is shown to play a crucial role in the large OR of norbornenone, as hinted by the DFT deloalization error inherent in many standard functional and confirmed by detailed analysis. The OR contributions generated by the double bond in a-pinene are even stronger than that of norbornenone. The isotropic average, observed in solution or in gas phase, is small as a result of cancellation of tensor components with opposite signs. The electronic coupling and delocalization of the C=C π bond and the C=O oxygen n lone pair in norbornenone selectively enhance one of the OR tensor components, resulting in the exceptionally large negative isotropic OR.
机译:在刚性双环烃骨架中同时具有C = O和C = C发色团的降冰片烯,其旋光性(OR)比仅具有这些发色团之一的类似分子(例如,α-pine烯)大一个数量级)。它的OR对电子结构计算中的近似值也非常敏感。本研究演示了一种新颖的方法,该方法利用熟悉的化学键合概念来解释旋光,并借助第一原理计算。开发了一种理论方法,用于根据单个键和孤对分析分子的OR张量。化学家的键与量子力学之间的联系是由从密度泛函理论(DFT)计算获得的局部分子轨道提供的。正如许多标准功能所固有的DFT脱铝误差所暗示的那样,并经过详细分析证实,π轨道的脱铝作用在降冰片烯酮的较大OR中显示出至关重要的作用。 α-pine烯中双键产生的OR贡献甚至强于降冰片烯。由于消除了具有相反符号的张量分量,在溶液或气相中观察到的各向同性平均值较小。降冰片烯酮中C = Cπ键和C = O氧n孤对的电子偶联和离域选择性地增强了OR张量分量之一,从而导致异常大的负各向同性OR。

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