Bradeanu I L, Flesch R, Kosugi N, Pavlychev A A, Rühl E
Institut für Physikalische Chemie, Universität Würzburg, Am Hubland, D-97074, Würzburg, Germany.
Phys Chem Chem Phys. 2006 Apr 28;8(16):1906-13. doi: 10.1039/b517199g. Epub 2006 Feb 27.
The C 1s -->pi* transition in molecular benzene and benzene clusters is investigated by photoion yields at high energy resolution. The vibrationally resolved band shows the same shape in clusters as in the bare molecule, but it is redshifted by 50 meV in small clusters, i.e. near the threshold of cluster formation. This redshift increases to 70 meV with increasing cluster size. The results are assigned in comparison with ab initio calculations on model structures of dimers, trimers, and tetramers. These indicate that different carbon sites in the molecular moieties give rise to distinct spectral shifts, where carbon sites that are pointing to the pi-system of another molecule show a larger redshift than the other ones. Such structural properties are found in solid benzene, so that the gas-to-solid shift of C 1s -->pi* excited benzene is derived to be a redshift which is of the order of 100-180 meV.
通过高能量分辨率下的光离子产率研究了分子苯和苯团簇中C 1s→π跃迁。振动分辨带在团簇中的形状与裸分子中的相同,但在小团簇中红移了50毫电子伏特,即在团簇形成阈值附近。随着团簇尺寸的增加,这种红移增加到70毫电子伏特。与二聚体、三聚体和四聚体模型结构的从头算计算结果进行比较后对结果进行了归属。这些结果表明,分子部分中不同的碳位点会产生不同的光谱位移,其中指向另一个分子π体系的碳位点比其他碳位点显示出更大的红移。在固态苯中发现了这样的结构性质,因此得出C 1s→π激发苯从气态到固态的位移是红移,其量级为100 - 180毫电子伏特。