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New bioinspired luminescent compounds based on lumazine: A photophysical study in solution and solid state

机译:基于Lumazine的新型生物悬浮亮化合物:溶液和固态的光物理研究

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Two polycyclic lumazine derivatives with different side chains (alkyl-acid and alkyl-ester chains) have been synthesized. Both novel bioinspired compounds exhibit interesting luminescent properties. Herein, the structural and optical properties of these compounds have been analyzed by single-crystal X-ray analysis, absorption, fluorescence and vibrational Raman spectroscopy together with DFT calculations. Their spectroscopic behavior depends on the five-fused core, which remains almost planar in the excited electronic state, and also on the nature of the side chain. In the solid phase, bathochromic shifts were observed with respect to solution for both molecules. These spectroscopic shifts were particularly notorious for the acid derivative and they might be related to the differences found in the molecular packing depending on the nature of the side chain. Two different theoretical strategies were employed to study the molecular packing in the crystalline state. Firstly, the energy of the S-0 -> S-1 transition was calculated for a molecule surrounded by a cluster of neighboring molecules extracted from the crystal structure. Secondly, the lowest-energy electronic transitions were computed for different-size molecular clusters extracted from the crystal structure. Thus, the J-aggregate photophysical behavior experimentally observed in the solid phase, and the spectroscopic differences between both compounds, were explained on the basis of short-range excitonic coupling. These results provide valuable insights for the rational design of new bioinspired compounds with luminescent properties.
机译:已经合成了两种具有不同侧链(烷基酸和烷基酯链)的多环醇醇衍生物。这两种新型生物晶化化合物都表现出有趣的发光特性。这里,通过单晶X射线分析,吸收,荧光和振动拉曼光谱与DFT计算进行了这些化合物的结构和光学性质。它们的光谱行为取决于五融合的核心,该核心在激发的电子状态下仍然是平坦的,并且还在侧链的性质上。在固相中,对两个分子的溶液观察到碱基转移。对于酸衍生物来说,这些光谱偏移特别臭名昭着,并且它们可能与根据侧链的性质的分子包装中发现的差异有关。使用两种不同的理论策略来研究结晶状态的分子包装。首先,计算S-0-> S-1转变的能量,用于由从晶体结构提取的相邻分子簇围绕的分子计算的能量。其次,为从晶体结构提取的不同尺寸的分子簇计算最低能量电子转换。因此,在基于短程激发器偶联的基础上解释了在固相中实验观察到的J-聚集的光学手术和两种化合物之间的光谱差异。这些结果为具有发光特性的新生物透明化合物的合理设计提供了有价值的见解。

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