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超快时域光谱揭示了晶体有机薄膜中电子激发时的相干振子耦合。

Ultrafast Time-Domain Spectroscopy Reveals Coherent Vibronic Couplings upon Electronic Excitation in Crystalline Organic Thin Films.

作者信息

Souri Somayeh, Timmer Daniel, Lünemann Daniel C, Hadilou Naby, Winte Katrin, De Sio Antonietta, Esmann Martin, Curdt Franziska, Winklhofer Michael, Anhäuser Sebastian, Guerrini Michele, Valencia Ana M, Cocchi Caterina, Witte Gregor, Lienau Christoph

机构信息

Institut für Physik, Carl von Ossietzky Universität, Carl-von-Ossietzky Str. 9-11, 26129 Oldenburg, Germany.

Center for Nanoscale Dynamics (CENAD), Carl von Ossietzky Universität, Carl-von-Ossietzky Str. 9-11, 26129 Oldenburg, Germany.

出版信息

J Phys Chem Lett. 2024 Nov 7;15(44):11170-11181. doi: 10.1021/acs.jpclett.4c02711. Epub 2024 Oct 31.

Abstract

The coherent coupling between electronic excitations and vibrational modes of molecules largely affects the optical and charge transport properties of organic semiconductors and molecular solids. To analyze these couplings by means of ultrafast spectroscopy, highly ordered crystalline films with large domains are particularly suitable because the domains can be addressed individually, hence allowing azimuthal polarization-resolved measurements. Impressive examples of this are highly ordered crystalline thin films of perfluoropentacene (PFP) molecules, which adopt different molecular orientations on different alkali halide substrates. Here, we report polarization-resolved time-domain vibrational spectroscopy with 10 fs time resolution and Raman spectroscopy of crystalline PFP thin films grown on NaF(100) and KCl(100) substrates. Coherent oscillations in the time-resolved spectra reveal vibronic coupling to a high-frequency, 25 fs, in-plane deformation mode that is insensitive to the optical polarization, while the coupling to a lower-frequency, 85 fs, out-of-plane ring bending mode depends significantly on the crystalline and molecular orientation. Comparison with calculated Raman spectra of isolated PFP molecules in vacuo supports this interpretation and indicates a dominant role of solid-state effects in the vibronic properties of these materials. Our results represent a first step toward uncovering the role of anisotropic vibronic couplings for singlet fission processes in crystalline molecular thin films.

摘要

分子的电子激发与振动模式之间的相干耦合在很大程度上影响着有机半导体和分子固体的光学及电荷传输特性。为了通过超快光谱法分析这些耦合,具有大畴的高度有序晶体薄膜尤为合适,因为可以单独研究这些畴,从而实现方位角偏振分辨测量。全氟并五苯(PFP)分子的高度有序晶体薄膜就是令人印象深刻的例子,其在不同的碱金属卤化物衬底上呈现不同的分子取向。在此,我们报道了在NaF(100)和KCl(100)衬底上生长的晶体PFP薄膜的具有10 fs时间分辨率的偏振分辨时域振动光谱和拉曼光谱。时间分辨光谱中的相干振荡揭示了与一种高频、25 fs、面内变形模式的振动耦合,该模式对光偏振不敏感,而与一种低频、85 fs、面外环弯曲模式的耦合则显著依赖于晶体和分子取向。与真空中孤立PFP分子的计算拉曼光谱的比较支持了这一解释,并表明固态效应在这些材料的振动特性中起主导作用。我们的结果代表了朝着揭示各向异性振动耦合在晶体分子薄膜中单线态裂变过程中的作用迈出的第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61ba/11552073/91392e53edb2/jz4c02711_0001.jpg

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