首页> 外文OA文献 >Assessment of Franck–Condon Methods for Computing Vibrationally Broadened UV–vis Absorption Spectra of Flavin Derivatives: Riboflavin, Roseoflavin, and 5-Thioflavin
【2h】

Assessment of Franck–Condon Methods for Computing Vibrationally Broadened UV–vis Absorption Spectra of Flavin Derivatives: Riboflavin, Roseoflavin, and 5-Thioflavin

机译:用于计算黄素衍生物的振动扩展紫外 - 可见吸收光谱的Franck-Condon方法的评估:核黄素,玫瑰黄素和5-硫黄素

摘要

We address the performance of the vertical and adiabatic Franck–Condon (VFC/AFC) approaches combined with time-independent or time-dependent (TI/TD) formalisms in simulating the one-photon absorption spectra of three flavin compounds with distinct structural features. Calculations were done in the gas phase and in two solvents (water, benzene) for which experimental reference measurements are available. We utilized the independent mode displaced harmonic oscillator model without or with frequency alteration (IMDHO/IMDHO-FA) and also accounted for Duschinsky mixing effects. In the initial validation on the first excited singlet state of riboflavin, the range-separated functionals, CAM-B3LYP and ωB97xD, showed the best performance, but B3LYP also gave a good compromise between peak positions and spectral topology. Large basis sets were not mandatory to obtain high-quality spectra for the selected systems. The presence of a symmetry plane facilitated the computation of vibrationally broadened spectra, since different FC variants yield similar results and the harmonic approximation holds rather well. Compared with the AFC approach, the VFC approach performed equally well or even better for all three flavins while offering several advantages, such as avoiding error-prone geometry optimization procedures on excited-state surfaces. We also explored the advantages of curvilinear displacements and of a Duschinsky treatment for the AFC spectra in cases when a rotatable group is present on the chromophore. Taken together, our findings indicate that the combination of the VFC approach with the TD formalism and the IMDHO-FA model offers the best overall performance.
机译:我们在模拟三种具有不同结构特征的黄素化合物的单光子吸收光谱时,研究了垂直绝热的弗兰克-康登(VFC / AFC)方法与时间独立或时间依赖(TI / TD)形式主义相结合的性能。计算是在气相和两种溶剂(水,苯)中进行的,这些溶剂可提供实验参考测量值。我们利用了不带或不带频率改变(IMDHO / IMDHO-FA)的独立模式位移谐波振荡器模型,并考虑了Duschinsky混合效应。在对核黄素的第一个激发单重态的初步验证中,范围分离的功能CAM-B3LYP和ωB97xD显示出最佳性能,但B3LYP在峰位置和光谱拓扑之间也有很好的折衷。为获得所选系统的高质量光谱,并非必须使用大基数集。对称平面的存在促进了振动加宽谱的计算,因为不同的FC变体产生相似的结果,并且谐波近似保持得很好。与AFC方法相比,VFC方法对所有三个黄素的表现均相同甚至更好,同时提供了多个优势,例如避免了在激发态表面上易于出错的几何优化程序。当生色团上存在可旋转基团时,我们还探讨了曲线位移和AFC谱的Duschinsky处理的优点。综上所述,我们的发现表明,VFC方法与TD形式主义和IMDHO-FA模型的结合提供了最佳的整体性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号