Piacenza M, Zambianchi M, Barbarella G, Gigli G, Della Sala F
National Nanotechnology Laboratory of CNR-INFM, Distretto Tecnologico ISUFI, Università del Salento, Via per Arnesano, I-73100, Lecce, Italy.
Phys Chem Chem Phys. 2008 Sep 21;10(35):5363-73. doi: 10.1039/b803963a. Epub 2008 Jul 8.
We report a theoretical study on the optical properties of bithiophene and terthiophene N-succinimidyl esters, which have been functionalized with a methylsulfanyl group in the alpha or the beta positions. Time-dependent density functional theory (TD-DFT) and approximate coupled-cluster singles and doubles with the resolution of identity technique (RI-CC2) calculations have been performed in the ground and excited states. The RI-CC2 results for absorption and fluorescence energies are in better qualitative agreement with experiments, whereas TD-DFT does not correctly describe the higher energy part of the absorption spectra of beta-substituted bithiophenes, due to the presence of charge-transfer states. Systems functionalized at the alpha position show a large red-shift of the main absorption and fluorescence band and a larger Stokes-shift compared to the unsubstituted species. These effects are in most cases less pronounced for the beta-substituted structures. In particular, we found that the Stokes-shift of the alpha-substituted structures is larger than the one of the beta-substituted species due to a more planar orientation of the methylsulfanyl group with respect to the neighbouring thiophene in the excited state.
我们报道了对α或β位带有甲硫基官能化的联噻吩和三联噻吩N - 琥珀酰亚胺酯光学性质的理论研究。在基态和激发态下进行了含时密度泛函理论(TD - DFT)以及采用单位分辨技术(RI - CC2)的近似耦合簇单双激发计算。RI - CC2计算得到的吸收和荧光能量结果与实验结果在定性上吻合得更好,而TD - DFT由于存在电荷转移态,不能正确描述β取代联噻吩吸收光谱的高能部分。与未取代的物种相比,α位官能化的体系主吸收和荧光带出现较大红移,且斯托克斯位移更大。在大多数情况下,这些效应在β取代结构中不太明显。特别是,我们发现由于在激发态下甲硫基相对于相邻噻吩具有更平面的取向,α取代结构的斯托克斯位移大于β取代物种的斯托克斯位移。