Giannini Samuele, Di Virgilio Lucia, Bardini Marco, Hausch Julian, Geuchies Jaco J, Zheng Wenhao, Volpi Martina, Elsner Jan, Broch Katharina, Geerts Yves H, Schreiber Frank, Schweicher Guillaume, Wang Hai I, Blumberger Jochen, Bonn Mischa, Beljonne David
Laboratory for Chemistry of Novel Materials, University of Mons, Mons, Belgium.
Max Planck Institute for Polymer Research, Mainz, Germany.
Nat Mater. 2023 Nov;22(11):1361-1369. doi: 10.1038/s41563-023-01664-4. Epub 2023 Sep 14.
Evidence shows that charge carriers in organic semiconductors self-localize because of dynamic disorder. Nevertheless, some organic semiconductors feature reduced mobility at increasing temperature, a hallmark for delocalized band transport. Here we present the temperature-dependent mobility in two record-mobility organic semiconductors: dinaphtho[2,3-b:2',3'-f]thieno[3,2-b]-thiophene (DNTT) and its alkylated derivative, C8-DNTT-C8. By combining terahertz photoconductivity measurements with atomistic non-adiabatic molecular dynamics simulations, we show that while both crystals display a power-law decrease of the mobility (μ) with temperature (T) following μ ∝ T , the exponent n differs substantially. Modelling reveals that the differences between the two chemically similar semiconductors can be traced to the delocalization of the different states that are thermally accessible by charge carriers, which in turn depends on their specific electronic band structure. The emerging picture is that of holes surfing on a dynamic manifold of vibrationally dressed extended states with a temperature-dependent mobility that provides a sensitive fingerprint for the underlying density of states.
有证据表明,由于动态无序,有机半导体中的电荷载流子会发生自局域化。然而,一些有机半导体在温度升高时迁移率降低,这是离域带输运的一个特征。在此,我们展示了两种创纪录迁移率的有机半导体——二萘并[2,3 - b:2',3'- f]噻吩并[3,2 - b]噻吩(DNTT)及其烷基化衍生物C8 - DNTT - C8——的温度依赖性迁移率。通过将太赫兹光电导率测量与原子非绝热分子动力学模拟相结合,我们发现,虽然两种晶体的迁移率(μ)均随温度(T)呈幂律下降,遵循μ ∝ T ,但指数n有很大差异。模型显示,这两种化学性质相似的半导体之间的差异可追溯到电荷载流子热可及的不同状态的离域化,而这又取决于它们特定的电子能带结构。由此呈现出的图景是,空穴在振动修饰的扩展态的动态流形上冲浪,其迁移率与温度相关,为底层的态密度提供了一个敏感的指纹。