Hammer Sebastian, Britt Tristan L, Kremeyer Laurenz, Rödel Maximilian, Cai David, Pflaum Jens, Siwick Bradley J
Department of Physics, Centre for the Physics of Materials, McGill University, Montreal, QC H3A OB8, Canada.
Department of Chemistry, Centre for the Physics of Materials, McGill University, Montreal, QC H3A OB8, Canada.
Proc Natl Acad Sci U S A. 2024 Dec 17;121(51):e2411975121. doi: 10.1073/pnas.2411975121. Epub 2024 Dec 10.
The formation of excited dimer states, so called excimers, is an important phenomenon in many organic molecular semiconductor solid state aggregates. In contrast to Frenkel exciton-polarons, an excimer is long-lived and energetically low-lying due to stabilization resulting from a substantial reorganization of the intermolecular geometry. Here, we show that ultrafast electron diffraction can follow the dynamics of solid-state excimer formation in polycrystalline thin films of a molecular semiconductor, revealing both the key reaction modes and the eventual structure of the emitting state. We study the prototypical organic semiconductor zinc-phthalocyanine (ZnPc) in its crystallographic -phase as a model excimeric system. We show that the excimer forms in a two-step process starting with a fast dimerization (approx. 0.4 ps) followed by a subsequent slow shear-twist motion (14 ps) leading to an alignment of the -systems of the involved monomers. This structural distortion persists well beyond 300 ps. Furthermore, we show that while the same excimer geometry is present in partially fluorinated derivatives of ZnPc, the formation kinematics slow down with increasing level of fluorination.
所谓准分子的激发二聚体状态的形成,是许多有机分子半导体固态聚集体中的一种重要现象。与弗伦克尔激子极化子不同,准分子寿命长且能量较低,这是由于分子间几何结构的大量重组导致的稳定作用。在此,我们表明超快电子衍射能够跟踪分子半导体多晶薄膜中固态准分子形成的动力学过程,揭示关键反应模式以及发射态的最终结构。我们研究了典型的有机半导体锌酞菁(ZnPc)在其晶体学相作为模型准分子体系。我们表明准分子通过两步过程形成,首先是快速二聚化(约0.4皮秒),随后是缓慢的剪切扭转运动(14皮秒),导致相关单体的π体系排列整齐。这种结构畸变在超过300皮秒的时间内持续存在。此外,我们表明虽然在ZnPc的部分氟化衍生物中存在相同的准分子几何结构,但随着氟化程度的增加,形成运动学过程会减慢。