Pei Linsen, Zhang Jie, Wu Chengyin, Kong Wei
Department of Chemistry, Oregon State University, Corvallis, OR 97331, USA.
J Chem Phys. 2006 Jul 14;125(2):24305. doi: 10.1063/1.2217948.
We report electronic polarization spectroscopy of tryptamine embedded in superfluid helium droplets. In a dc electric field, dependence of laser induced fluorescence from tryptamine on the polarization direction of the excitation laser is measured. Among the three observed major conformers A, D, and E, conformers D and E display preference for perpendicular excitation relative to the orientation field, while conformer A is insensitive to the polarization direction of the excitation laser. We attribute the behavior of conformer A to the fact that the angle between the permanent dipole and the transition dipole is close to the magic angle. Using a linear variation method, we can reproduce the polarization preference of the three conformers and determine the angle between the transition dipole and the permanent dipole. Since the side chain exerts small effect on the direction of the transition dipole in the frame of the indole chromophore, all three conformers have a common transition dipole more or less in the indole plane at an angle of approximately 60 degrees relative to the long axis of the chromophore. The orientation of the side chain, on the other hand, determines the size and direction of the permanent dipole, thereby affecting the angle between the permanent dipole and the transition dipole. For conformer D in the droplet, our results agree with the Anti(ph) structure, rather than the Anti(py) structure. Our work demonstrates that polarization spectroscopy is effective in conformational identification for molecules that contain a known chromophore. Although coupling of the electronic transition with the helium matrix is not negligible, it does not affect the direction of the transition dipole.
我们报道了嵌入超流氦滴中的色胺的电子极化光谱。在直流电场中,测量了色胺的激光诱导荧光对激发激光偏振方向的依赖性。在观察到的三个主要构象体A、D和E中,构象体D和E相对于取向场表现出对垂直激发的偏好,而构象体A对激发激光的偏振方向不敏感。我们将构象体A的行为归因于永久偶极矩与跃迁偶极矩之间的夹角接近魔角这一事实。使用线性变分法,我们可以重现这三个构象体的偏振偏好,并确定跃迁偶极矩与永久偶极矩之间的夹角。由于在吲哚发色团框架内侧链对跃迁偶极矩方向的影响较小,所有这三个构象体或多或少都有一个共同的跃迁偶极矩,其在吲哚平面内相对于发色团长轴的角度约为60度。另一方面,侧链的取向决定了永久偶极矩的大小和方向,从而影响永久偶极矩与跃迁偶极矩之间的夹角。对于液滴中的构象体D,我们的结果与反式(ph)结构一致,而不是反式(py)结构。我们的工作表明,极化光谱对于含有已知发色团的分子的构象识别是有效的。尽管电子跃迁与氦基质的耦合不可忽略,但它不会影响跃迁偶极矩的方向。