Bertocchi Francesco, Marchetti Danilo, Doria Sandra, di Donato Mariangela, Sissa Cristina, Gemmi Mauro, Dalcanale Enrico, Pinalli Roberta, Lapini Andrea
Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, and INSTM, UdR Parma, Parco Area delle Scienze17/A, 43124, Parma, Italy.
Istituto Italiano di Tecnologia, Center for Materials Interfaces, Electron Crystallography, Viale Rinaldo Piaggio 34, 56025, Pontedera, Italy.
Chemistry. 2024 Jan 2;30(1):e202302619. doi: 10.1002/chem.202302619. Epub 2023 Nov 13.
The current work focuses on the investigation of two functionalized naphthyridine derivatives, namely ODIN-EtPh and ODIN-But, to gain insights into the hydrogen bond-assisted H-aggregate formation and its impact on the optical properties of ODIN molecules. By employing a combination of X-ray and electron crystallography, absorption and emission spectroscopy, time resolved fluorescence and ultrafast pump-probe spectroscopy (visible and infrared) we unravel the correlation between the structure and light-matter response, with a particular emphasis on the influence of the polarity of the surrounding environment. Our experimental results and simulations confirm that in polar and good hydrogen-bond acceptor solvents (DMSO), the formation of dimers for ODIN derivatives is strongly inhibited. The presence of a phenyl group linked to the ureidic unit favors the folding of ODIN derivatives (forming an intramolecular hydrogen bond) leading to the stabilization of a charge-transfer excited state which almost completely quenches its fluorescence emission. In solvents with a poor aptitude for forming hydrogen bonds, the formation of dimers is favored and gives rise to H aggregates, with a consequent considerable reduction in the fluorescence emission. The urea-bound phenyl group furtherly stabilizes the dimers in chloroform.
当前的工作聚焦于对两种功能化萘啶衍生物ODIN-EtPh和ODIN-But的研究,以深入了解氢键辅助的H聚集体形成及其对ODIN分子光学性质的影响。通过结合X射线和电子晶体学、吸收和发射光谱、时间分辨荧光以及超快泵浦-探测光谱(可见光和红外光),我们揭示了结构与光-物质响应之间的相关性,特别强调了周围环境极性的影响。我们的实验结果和模拟证实,在极性且良好的氢键受体溶剂(二甲基亚砜)中,ODIN衍生物二聚体的形成受到强烈抑制。与脲基相连的苯基的存在有利于ODIN衍生物的折叠(形成分子内氢键),导致电荷转移激发态的稳定,几乎完全淬灭其荧光发射。在形成氢键能力较差的溶剂中,二聚体的形成受到青睐并产生H聚集体,从而导致荧光发射大幅降低。与脲结合的苯基进一步使氯仿中的二聚体稳定。