Department of Physics, CNRS-Ewha International Research Center, Ewha Womans University, Seoul, South Korea.
Phys Chem Chem Phys. 2014 Aug 28;16(32):16941-56. doi: 10.1039/c4cp01134a.
We investigate the photophysical and amplified spontaneous emission properties of a series of monodisperse solution-processable oligofluorenes functionalized with hexyl chains at the C9 position of each fluorene unit. Thin films of these oligofluorenes are then used in organic field-effect transistors and their charge transport properties are examined. We have particularly focused our attention on the influence of oligofluorene length on the absorption and steady-state fluorescence spectra, on the HOMO/LUMO energy levels, on the photoluminescence lifetime and quantum yield as well as on the amplified spontaneous emission properties and the charge carrier mobilities. Differential scanning calorimetry and X-ray diffraction measurements demonstrate that, among all oligofluorene derivatives used in this study, only the structure and morphology of the pentafluorene film is significantly modified by a thermal treatment above the glass transition temperature, resulting in a 9 nm blue-shift of the fluorescence spectrum without significant changes in the photoluminescence quantum yield and in the amplified spontaneous emission threshold. In parallel, hole field-effect mobility is significantly increased from 8.6 × 10(-7) to 3.8 × 10(-5) cm(2) V(-1) s(-1) upon thermal treatment, due to an increase of crystallinity. This study provides useful insights into the morphological control of oligofluorene thin films and how it affects their photophysical and charge transport properties. Moreover, we provide evidence that, because of the low threshold, the tunability of the amplified spontaneous emission and the photostability of the films, these oligofluorenes are promising candidates for organic solid-state laser applications.
我们研究了一系列在 C9 位上带有己基链的单分散溶液处理的寡聚芴的光物理和放大自发发射性质。这些寡聚芴的薄膜然后被用于有机场效应晶体管,并研究了它们的电荷输运性质。我们特别关注寡聚芴长度对吸收和稳态荧光光谱、HOMO/LUMO 能级、荧光寿命和量子产率以及放大自发发射性质和电荷载流子迁移率的影响。差示扫描量热法和 X 射线衍射测量表明,在本研究中使用的所有寡聚芴衍生物中,只有五氟芴的结构和形态在高于玻璃化转变温度的热处理下显著改变,导致荧光光谱蓝移 9nm,而荧光量子产率和放大自发发射阈值没有明显变化。同时,由于结晶度的增加,空穴场效应迁移率从 8.6×10(-7)显著增加到 3.8×10(-5)cm(2)V(-1)s(-1)。这项研究提供了对寡聚芴薄膜形态控制及其对光物理和电荷输运性质影响的有用见解。此外,我们提供的证据表明,由于这些薄膜的阈值低、放大自发发射的可调谐性和光稳定性,这些寡聚芴是有机固态激光器应用的有前途的候选材料。