Germer Stefan, Bauer Marco, Hübner Olaf, Marten Ramona, Dreuw Andreas, Himmel Hans-Jörg
Inorganic Chemistry, Ruprecht-Karls Universität Heidelberg, Im Neuenheimer Feld 270, 69120, Heidelberg, Germany.
Interdisziplinäres Zentrum für Wissenschaftliches Rechnen (IWR), Ruprecht-Karls Universität Heidelberg, Im Neuenheimer Feld 205, 69120, Heidelberg, Germany.
Chemistry. 2023 Dec 22;29(72):e202302296. doi: 10.1002/chem.202302296. Epub 2023 Nov 8.
In this work, matrix-isolation spectroscopy and quantum-chemical calculations are used together to analyse the structure and properties of weakly bound dimers of the two isomers benzo[a]acridine and benzo[c]acridine. Our measured experimental electronic absorbance spectra agree with simulated spectra calculated for the equilibrium structures of the dimers in gas-phase, but in contrast, disagree with the simulated spectra calculated for the structures obtained by optimising the experimental solid-state structures. This highlights the sensitivity of the electronic excitations with respect to the dimer structures. The comparison between the solid-state and gas-phase dimers shows how far the intermolecular interactions could change the geometric and electronic structure in a disordered bulk material or at device interfaces, imposing consequences for exciton and charge mobility and other material properties.
在这项工作中,矩阵隔离光谱法和量子化学计算共同用于分析两种异构体苯并[a]吖啶和苯并[c]吖啶的弱束缚二聚体的结构和性质。我们测得的实验电子吸收光谱与针对气相中二聚体平衡结构计算的模拟光谱一致,但相比之下,与通过优化实验固态结构获得的结构所计算的模拟光谱不一致。这突出了电子激发对二聚体结构的敏感性。固态和气相二聚体之间的比较表明,分子间相互作用在无序块状材料或器件界面中能够在多大程度上改变几何和电子结构,这对激子和电荷迁移率以及其他材料性质产生影响。