论文标题

炭疽衍生物化合物的合成,晶体结构,多态性和微观发光特性

Synthesis, crystal structure, polymorphism and microscopic luminescence properties of anthracene derivative compounds

论文作者

Moliterni, Anna, Altamura, Davide, Lassandro, Rocco, Olieric, Vincent, Ferri, Gianmarco, Cardarelli, Francesco, Camposeo, Andrea, Pisignano, Dario, Anthony, John E., Giannini, Cinzia

论文摘要

目前,由于其独特的物理特性(例如,明亮的发光和发射可调性),目前研究了炭疽衍生物化合物,这使其成为高级光电设备的理想候选者。分子间相互作用是这些化合物光学和电子性能的可调性的基础,这些化合物的光学和电子性能的预测和剥削受益于晶体结构和堆积结构的知识。由于分子间相互作用弱,可能会发生多态性,要求详细的结构分析阐明观察到的材料特性修饰的起源。在这里,两种甲硅烷基取代的蒽化合物的特征是单晶同步加速器X射线衍射,鉴定了新的多晶型物。另外,激光共聚焦显微镜和荧光寿命成像显微镜证实了通过X射线衍射表征获得的结果,即,将取代基转移到炭疽单位的外部苯环π-π相互作用,从而影响了形态学和显微镜光学特性。具有更孤立的蒽单元的化合物具有较短的寿命和发射光谱,与那些分离的分子更相似。在光学研究的支持下,晶体学研究阐明了非共价相互作用对炭疽衍生物的晶体填料和发光特性的影响,从而进一步迈向了它们有效使用,作为光源和光子网络的活性组件中的构建块。

Anthracene derivative compounds are currently investigated because of their unique physical properties (e.g., bright luminescence and emission tunability), which make them ideal candidates for advanced optoelectronic devices. Intermolecular interactions are the basis of the tunability of the optical and electronic properties of these compounds, whose prediction and exploitation benefit from the knowledge of the crystal structure and the packing architecture. Polymorphism can occur due to the weak intermolecular interactions, asking for detailed structural analysis clarifying the origin of observed material property modifications. Here, two silylethyne-substituted anthracene compounds are characterized by single-crystal synchrotron X-ray diffraction, identifying a new polymorph. Additionally, laser confocal microscopy and fluorescence lifetime imaging microscopy confirm the results obtained by the X-ray diffraction characterization, i.e., shifting the substituents towards the external benzene rings of the anthracene unit favours π-π interactions, impacting on both the morphology and the microscopic optical properties of the crystals. The compounds with more isolated anthracene units feature shorter lifetime and emission spectra more similar to those ones of isolated molecules. The crystallographic study, supported by the optical investigation, sheds light on the influence of non-covalent interactions on the crystal packing and luminescence properties of anthracene derivatives, providing a further step towards their efficient use as building blocks in active components of light sources and photonic networks.

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