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首页> 外文期刊>The Journal of Chemical Physics >Ab initio study of excited state electronic circular dichroism. Two prototype cases: Methyl oxirane and R-(+)-1,1′-bi(2-naphthol)
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Ab initio study of excited state electronic circular dichroism. Two prototype cases: Methyl oxirane and R-(+)-1,1′-bi(2-naphthol)

机译:从头开始研究激发态电子圆二色性。两个原型案例:甲基环氧乙烷和R-(+)-1,1'-bi(2-萘酚)

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摘要

A computational approach to the calculation of excited state electronic circular dichroism (ESECD) spectra of chiral molecules is discussed. Frequency dependent quadratic response theory is employed to compute the rotatory strength for transitions between excited electronic states, by employing both a magnetic gauge dependent and a (velocity-based) magnetic gauge independent approach. Application is made to the lowest excited states of two prototypical chiral molecules, propylene oxide, also known as 1,2-epoxypropane or methyl oxirane, and R-1,1′-bi(2-naphthol), or BINOL. The dependence of the rotatory strength for transitions between the lowest three excited states of methyl oxirane upon the quality and extension of the basis set is analyzed, by employing a hierarchy of correlation consistent basis sets. Once established that basis sets of at least triple zeta quality, and at least doubly augmented, are sufficient to ensure sufficiently converged results, at least at the Hartree-Fock self-consistent field (HF-SCF) level, the rotatory strengths for all transitions between the lowest excited electronic states of methyl oxirane are computed and analyzed, employing HF-SCF, and density functional theory (DFT) electronic structure models. For DFT, both the popular B3LYP and its recently highly successful CAM-B3LYP extension are exploited. The strong dependence of the spectra upon electron correlation is highlighted. A HF-SCF and DFT study is carried out also for BINOL, a system where excited states show the typical pairing structure arising from the interaction of the two monomeric moieties, and whose conformational changes following photoexcitation were studied recently with via time-resolved CD.
机译:讨论了一种计算手性分子激发态电子圆二色性(ESECD)光谱的方法。频率相关的二次响应理论被用来通过同时使用依赖于磁规和(独立于速度的)磁规的方法来计算激发电子态之间跃迁的旋转强度。应用于两个原型手性分子的最低激发态,即环氧丙烷,也称为1,2-环氧丙烷或甲基环氧乙烷,以及R-1,1'-bi(2-萘酚)或BINOL。通过采用相关一致的基集层次结构,分析了甲基环氧乙烷的最低三个激发态之间跃迁的旋转强度对基集质量和扩展的依赖性。一旦建立,至少三重zeta质量并且至少加倍增强的基础集就足以确保足够收敛的结果,至少在Hartree-Fock自洽场(HF-SCF)级别上,所有过渡的旋转强度利用HF-SCF和密度泛函理论(DFT)电子结构模型计算和分析了甲基环氧乙烷的最低激发电子态之间的关系。对于DFT,开发了流行的B3LYP及其最近非常成功的CAM-B3LYP扩展。突出了光谱对电子相关性的强烈依赖性。还对BINOL进行了HF-SCF和DFT研究,该系统的激发态显示出两个单体部分相互作用产生的典型配对结构,最近通过时间分辨CD研究了光激发后其构象变化。

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