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核黄素的超快红外光谱:动力学、电子结构和振动模式分析。

Ultrafast infrared spectroscopy of riboflavin: dynamics, electronic structure, and vibrational mode analysis.

作者信息

Wolf Matthias M N, Schumann Christian, Gross Ruth, Domratcheva Tatiana, Diller Rolf

机构信息

Fachbereich Physik, TU Kaiserslautern, D-67663 Kaiserslautern, Germany.

出版信息

J Phys Chem B. 2008 Oct 23;112(42):13424-32. doi: 10.1021/jp804231c. Epub 2008 Sep 27.

Abstract

Femtosecond time-resolved infrared spectroscopy was used to study the vibrational response of riboflavin in DMSO to photoexcitation at 387 nm. Vibrational cooling in the excited electronic state is observed and characterized by a time constant of 4.0 +/- 0.1 ps. Its characteristic pattern of negative and positive IR difference signals allows the identification and determination of excited-state vibrational frequencies of riboflavin in the spectral region between 1100 and 1740 cm (-1). Density functional theory (B3LYP), Hartree-Fock (HF) and configuration interaction singles (CIS) methods were employed to calculate the vibrational spectra of the electronic ground state and the first singlet excited pipi* state as well as respective electronic energies, structural parameters, electronic dipole moments and intrinsic force constants. The harmonic frequencies of the S 1 excited state calculated by the CIS method are in satisfactory agreement with the observed band positions. There is a clear correspondence between computed ground- and excited-state vibrations. Major changes upon photoexcitation include the loss of the double bond between the C4a and N5 atoms, reflected in a downshift of related vibrations in the spectral region from 1450 to 1720 cm (-1). Furthermore, the vibrational analysis reveals intra- and intermolecular hydrogen bonding of the riboflavin chromophore.

摘要

飞秒时间分辨红外光谱用于研究二甲基亚砜(DMSO)中核黄素在387nm光激发下的振动响应。观察到激发电子态中的振动冷却现象,其时间常数为4.0±0.1皮秒,并对其进行了表征。其正负红外差分信号的特征模式有助于识别和确定核黄素在1100至1740厘米(-1)光谱区域内的激发态振动频率。采用密度泛函理论(B3LYP)、哈特里-福克(HF)和单激发组态相互作用(CIS)方法计算电子基态和第一单重激发ππ*态的振动光谱以及各自的电子能量、结构参数、电子偶极矩和本征力常数。用CIS方法计算的S1激发态的谐频与观察到的谱带位置吻合良好。计算得到的基态和激发态振动之间存在明显的对应关系。光激发后的主要变化包括C4a和N5原子之间双键的消失,这反映在1450至1720厘米(-1)光谱区域内相关振动的下移。此外,振动分析揭示了核黄素发色团的分子内和分子间氢键。

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