Air Force Research Laboratory DoD Supercomputer Resource Center, Wright-Patterson Air Force Base, Ohio 45433, USA.
Air Force Institute of Technology, Wright-Patterson Air Force Base, Ohio 45433, USA.
J Chem Phys. 2017 Jun 21;146(23):234302. doi: 10.1063/1.4984063.
Excited state properties of chain and cyclic oligomers of closo-SiC moieties are calculated using time-dependent density functional theory methods. Ultraviolet, visible, and near-infrared photo-absorption properties are described for oligomers that form by linking closo-SiC monomer moieties through Si-Si bonds. Natural transition orbitals for electron and hole states of stationary-state excitons in oligomers were compared to understand how exciton states are influenced by oligomer structure. Depending on the structure, some prominent excited states have large electron-hole charge separation while others do not; some exhibit exciton delocalization while others do not. With increasing oligomer length, the character of the transition between silicon and carbon regions tends to be maintained. And the extent of exciton delocalization and charge separation for an excitation is strongly influenced by the number and types of Si-Si links between oligomer units. We find that cyclic quadramers have spectroscopy properties akin to those of J-aggregates, including the tendency to collapse oligomer excitation transition energies into a narrow single peak. Hydrogenation influences some excited state distributions and energies. Phase behaviors reveal electron state or hole state equivalence in certain molecules that are differently hydrogenated, illustrating the potential for near-resonant exciton transfer between adjacent donor and acceptor species.
使用含时密度泛函理论方法计算了笼型 SiC 链状和环状低聚物的激发态性质。描述了通过 Si-Si 键连接笼型 SiC 单体形成的低聚物的紫外、可见和近红外光吸收性质。比较了低聚物中定态激子的电子和空穴态的自然跃迁轨道,以了解激子态如何受低聚物结构的影响。根据结构的不同,一些突出的激发态具有较大的电子-空穴电荷分离,而另一些则没有;一些表现出激子离域,而另一些则没有。随着低聚物长度的增加,硅和碳区域之间的跃迁性质趋于保持。激发的激子离域和电荷分离程度强烈受到低聚物单元之间 Si-Si 键的数量和类型的影响。我们发现,环状四聚体具有类似于 J-聚集体的光谱性质,包括将低聚物激发跃迁能压缩成单个窄峰的趋势。氢化影响了一些激发态分布和能量。相行为揭示了在不同氢化的某些分子中电子态或空穴态的等价性,说明了相邻给体和受体物种之间近共振激子转移的潜力。