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首页> 外文期刊>Computational & theoretical chemistry >Excited-state properties of a blue luminescent covalent organic framework by the time-dependent density-functional tight-binding method
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Excited-state properties of a blue luminescent covalent organic framework by the time-dependent density-functional tight-binding method

机译:时间依赖的密度泛函紧密结合方法的蓝色发光共价有机骨架的激发态性质

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Excited-state properties of a blue luminescent two-dimensional (2D) layered covalent organic framework (COF) have been studied by the time-dependent density-functional tight-binding (TD-DFTB) method and compared with available experimental data. For single layer fragment, signatures in absorption and emission spectra are revealed, which show the typical π-π~* transitions and intramolecular charge transfer (ICT) character. The influence of interlayer stacking has also been considered. Our calculations on the interlayer spacing of the COF suggest that adjacent layers are considerably more stable if their stacking arrangement is horizontally offset by ≈1.4 ? compared with the eclipsed AA stacking structure. Excitestates calculations of high-symmetry eclipsed AA stacking and low-symmetry offset stacking are also considered. The low-symmetry offset stacking shows higher luminescence intensity but lower carrier transport ability. These calculations will be helpful for understanding interlayer excitation and carrier mobility, and the balance of the two processes is essential to the designing of the COF-based optoelectronic devices.
机译:蓝色发光二维(2D)层状共价有机骨架(COF)的激发态性质已通过时间依赖的密度泛函紧密结合(TD-DFTB)方法进行了研究,并与可用的实验数据进行了比较。对于单层碎片,在吸收和发射光谱中显示出特征,这些特征显示出典型的π-π〜*跃迁和分子内电荷转移(ICT)特征。还已经考虑了层间堆叠的影响。我们对COF的层间间距的计算表明,如果相邻层的堆叠排列水平偏移≈1.4?,则相邻层的稳定性会大大提高。与黯淡的AA堆叠结构相比。还考虑了高对称偏光AA堆叠和低对称偏移量堆叠的激励计算。低对称偏移堆叠显示较高的发光强度,但较低的载流子传输能力。这些计算将有助于理解层间激发和载流子迁移率,并且这两个过程之间的平衡对于基于COF的光电器件的设计至关重要。

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