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包含共振波长的旋光色散的含时密度泛函计算作为确定手性分子绝对构型的潜在有用工具。

Time-dependent density functional calculations of optical rotatory dispersion including resonance wavelengths as a potentially useful tool for determining absolute configurations of chiral molecules.

作者信息

Autschbach Jochen, Jensen Lasse, Schatz George C, Tse Y C Electra, Krykunov Mykhaylo

机构信息

Department of Chemistry, 312 NSC, State University of New York at Buffalo, Buffalo, New York 14260-3000, USA.

出版信息

J Phys Chem A. 2006 Feb 23;110(7):2461-73. doi: 10.1021/jp054847z.

DOI:10.1021/jp054847z
PMID:16480306
Abstract

The optical rotations for six organic molecules (verbenone, fenchone, camphor, nopinone, Tröger's base, dimethyl-cyclopropane) and the transition metal complex Co(en)(3) were calculated as a function of wavelength using time-dependent density functional theory (TDDFT). In the calculations, a realistic behavior of the optical rotation in the vicinity of an electronic transition was obtained by using a phenomenological damping parameter of the order of 0.2 eV (0.007 au). In comparison with experiment, for the molecules studied here the sign and order of magnitude of the optical rotation as well as the excitation energies were reasonably well reproduced in most computations. These findings apply to the investigated wavelength ranges typically between about 200 and 650 nm even when using comparatively small basis sets. Such calculations might therefore routinely be applied to help assigning the absolute configurations of chiral molecules. Supplementary calculations of the circular dichroism (CD) and comparison with experimental CD were used for further assessment of the optical rotation calculations. In particular, a combined study of optical rotation and CD turned out to be useful in cases where the optical rotatory dispersion in a specific energy range exhibits a considerable blue or red shift or where it is difficult to reproduce because of an interplay of several competing Cotton effects. The influence of basis set, density functional, and the damping parameter was also investigated.

摘要

使用含时密度泛函理论(TDDFT)计算了六种有机分子(马鞭草烯酮、葑酮、樟脑、诺蒎酮、特罗格碱、二甲基环丙烷)和过渡金属配合物Co(en)(3)的旋光随波长的变化。在计算中,通过使用约0.2 eV(0.007 au)量级的唯象阻尼参数,得到了电子跃迁附近旋光的实际行为。与实验相比,对于此处研究的分子,在大多数计算中旋光的符号和量级以及激发能都得到了较好的再现。即使使用相对较小的基组,这些发现也适用于通常在约200至650 nm之间的研究波长范围。因此,此类计算可常规用于帮助确定手性分子的绝对构型。通过圆二色性(CD)的补充计算以及与实验CD的比较,对旋光计算进行了进一步评估。特别是,在特定能量范围内旋光色散表现出相当大的蓝移或红移,或者由于几种相互竞争的科顿效应相互作用而难以再现的情况下,旋光和CD的联合研究被证明是有用的。还研究了基组、密度泛函和阻尼参数的影响。

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