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跃迁密度-片段相互作用方法在激子耦合圆二色光谱中的应用。

Transition-density-fragment interaction approach for exciton-coupled circular dichroism spectra.

机构信息

Department of Chemistry, Graduate School of Science, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

J Chem Phys. 2010 Sep 28;133(12):124101. doi: 10.1063/1.3480015.

Abstract

A transition-density-fragment interaction (TDFI) method for exciton-coupled circular dichroism (ECCD) spectra is proposed. The TDFI method was previously developed for excitation-energy transfer, which led to the successful estimation of the electronic coupling energy between donor and accepter molecules in xanthorhodopsin [K. J. Fujimoto and S. Hayashi, J. Am. Chem. Soc. 131, 14152 (2009)]. In the present study, the TDFI scheme is extended to the ECCD spectral calculation based on the matrix method and is applied to a dimerized retinal (all-trans N-retinylidene-L-alanine Schiff base) chromophore. Compared with the dipole-dipole and transition charge from ESP methods, TDFI has a much improved description of the electronic coupling. In addition, the matrix method combined with TDFI can reduce the computational costs compared with the full quantum-mechanical calculation. These advantages of the present method make it possible to accurately evaluate the CD Cotton effects observed in experiment.

摘要

提出了一种用于激子耦合圆二色性(ECCD)光谱的过渡密度-片段相互作用(TDFI)方法。TDFI 方法最初是为激发能量转移而开发的,这导致成功估计了黄质蛋白中供体和受体分子之间的电子耦合能[K. J. Fujimoto 和 S. Hayashi,J. Am. Chem. Soc. 131, 14152(2009)]。在本研究中,基于矩阵方法将 TDFI 方案扩展到 ECCD 光谱计算中,并将其应用于二聚化视黄醛(全反式 N-视黄醛-L-丙氨酸席夫碱)发色团。与偶极-偶极子和从 ESP 方法跃迁的电荷相比,TDFI 对电子耦合的描述有了很大的改进。此外,与全量子力学计算相比,矩阵方法与 TDFI 相结合可以降低计算成本。该方法的这些优势使得能够准确评估实验中观察到的 CD 科顿效应。

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