Seiler Hélène, Krynski Marcin, Zahn Daniela, Hammer Sebastian, Windsor Yoav William, Vasileiadis Thomas, Pflaum Jens, Ernstorfer Ralph, Rossi Mariana, Schwoerer Heinrich
Fritz-Haber-Institut der Max-Planck-Gesellschaft, Berlin 14195, Germany.
Julius-Maximilians-Universität, Experimentelle Physik VI, Am Hubland, 97074 Würzburg, Germany.
Sci Adv. 2021 Jun 25;7(26). doi: 10.1126/sciadv.abg0869. Print 2021 Jun.
Singlet exciton fission (SEF) is a key process for developing efficient optoelectronic devices. An aspect rarely probed directly, yet with tremendous impact on SEF properties, is the nuclear structure and dynamics involved in this process. Here, we directly observe the nuclear dynamics accompanying the SEF process in single crystal pentacene using femtosecond electron diffraction. The data reveal coherent atomic motions at 1 THz, incoherent motions, and an anisotropic lattice distortion representing the polaronic character of the triplet excitons. Combining molecular dynamics simulations, time-dependent density-functional theory, and experimental structure factor analysis, the coherent motions are identified as collective sliding motions of the pentacene molecules along their long axis. Such motions modify the excitonic coupling between adjacent molecules. Our findings reveal that long-range motions play a decisive part in the electronic decoupling of the electronically correlated triplet pairs and shed light on why SEF occurs on ultrafast time scales.
单线态激子裂变(SEF)是开发高效光电器件的关键过程。核结构以及该过程中涉及的动力学是一个很少直接探究但对SEF特性有巨大影响的方面。在此,我们使用飞秒电子衍射直接观察单晶并五苯中伴随SEF过程的核动力学。数据揭示了1太赫兹的相干原子运动、非相干运动以及代表三重态激子极化子特性的各向异性晶格畸变。结合分子动力学模拟、含时密度泛函理论和实验结构因子分析,相干运动被确定为并五苯分子沿其长轴的集体滑动运动。这种运动改变了相邻分子之间的激子耦合。我们的研究结果表明,长程运动在电子相关三重态对的电子解耦中起决定性作用,并阐明了SEF为何在超快时间尺度上发生。