Physics Department and Center for Optoelectronics and Photonics Paderborn (CeOPP), Universität Paderborn, Warburger Strasse 100, 33098 Paderborn, Germany.
J Phys Chem B. 2013 Apr 25;117(16):4454-60. doi: 10.1021/jp3084869. Epub 2012 Dec 11.
We study electronic and optical properties of the low-bandgap co-polymer PCPDT-BT (poly-cyclopentadithiophene-co-benzothiadiazole) and compare it with the corresponding homo-polymer PCPDT (poly-cyclopentadithiophene). We investigate the linear absorptivity in these systems for neutral molecules and for their singly charged ions based on quantum-chemical calculations and experiments. One of our main findings is that the ions of the homo-polymer show a polaron absorption that is symmetric between anion and cation, whereas for polaron excitations in the co-polymer this symmetry is strongly lifted. We demonstrate that this asymmetry can be attributed to the absence of symmetry between the high-lying occupied and low-lying unoccupied molecular orbitals in the co-polymer with type-II orbital alignment between the moieties constituting the chain. This notion is of importance for the qualitative and quantitative interpretation of spectroscopic polaron data and is not specific to the system studied here but similarly applies to other co-polymers.
我们研究了低带隙共聚物 PCPDT-BT(聚环戊二烯噻吩-苯并噻二唑)的电子和光学性质,并将其与相应的均聚物 PCPDT(聚环戊二烯噻吩)进行了比较。我们基于量子化学计算和实验研究了这些体系中中性分子和单电荷离子的线性吸收。我们的主要发现之一是,均聚物的离子显示出在阴离子和阳离子之间对称的极化子吸收,而对于共聚物中的极化子激发,这种对称性被强烈打破。我们证明,这种不对称性可以归因于构成链的部分之间具有 II 型轨道排列,使得共聚物中高能占据轨道和低能未占据轨道之间不存在对称性。这一概念对于光谱极化子数据的定性和定量解释非常重要,并且不仅限于这里研究的体系,而是同样适用于其他共聚物。