首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Role of Intermolecular Interactions in the Excited-State Photophysics of Tetracene and 2,2 '-Ditetracene
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Role of Intermolecular Interactions in the Excited-State Photophysics of Tetracene and 2,2 '-Ditetracene

机译:分子间相互作用在四烯和2,2'-dettracene的激发 - 状态光学学中的作用

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We carried out a comparative study on the excited-state properties of tetracene, which is prone to singlet fission, and its 2,2 '-ditetracene derivative to analyze the dependence of such loss channels on molecular packing and, thus, intermolecular interactions. In neat single crystals, the absorption and emission spectra of 2,2 '-ditetracene are significantly red-shifted by about 150 meV from those of tetracene, while in the case of isolated molecules dispersed in crystalline anthracene matrixes, both dyes show virtually identical emission patterns. Unlike tetracene, the absence of delayed fluorescence in 2,2 '-ditetracene single-crystal photoluminescence (PL) and time-dependent density functional theory (DFT) calculations based on experimental single-crystal structures indicate a decline in the excited singlet-state energy below the E(S-1) = 2E(T-1) threshold. Simultaneously, time-resolved temperature-dependent PL data reveal an interplay of the molecular S1 state and an excited dimer state, which is efficiently populated above 10 K. Upon cooling, the photoluminescence of 2,2 '-ditetracene crystals outperforms that of tetracene by more than an order of magnitude and highlights the potential of molecular design, here the covalent linking of two tetracenes, to conserve the optical properties of the individual chromophores while decisively improving their photophysical properties in the crystalline aggregate.
机译:我们对四烯的激发状态性质进行了比较研究,其容易发生裂变,其2,2'-detecene衍生物分析这种损失通道对分子包装的依赖性,因此分子间相互作用。在整洁的单晶中,2,2'-丁酮的吸收和发射光谱从四烯的那些中显着红移,而在分散在结晶蒽基质中的分离分子的情况下,两种染料都显示出几乎相同的发射模式。与四烯不同,基于实验单晶结构的2,2'-丁啶单晶光致发光(PL)和时间依赖性密度官能理论(DFT)计算的延迟荧光的不存在表明激发单态能量下降低于E(S-1)= 2E(T-1)阈值。同时,时间分辨温度依赖性PL数据显示分子S1状态和激发二聚体状态的相互作用,其有效地填充在10K以上。在冷却时,2,2'-丁酮晶体的光致发光优于四环的变形超过一个数量级,并突出显示分子设计的电位,这里具有两种四胞苷的共价连接,以保护各种发色团的光学性质,同时在结晶骨料中果断地改善它们的光学性质。

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