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Fluorescent coumarin derivatives with large stokes shift, dual emission and solid state luminescent properties: An experimental and theoretical study

机译:具有大行程偏移,双发射和固态发光特性的荧光香豆素衍生物:实验和理论研究

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摘要

Coumarin derivatives containing 8-benzothiazole (C-2) and its difluoroboron bound derivative (C-3) were prepared. Both derivatives show dual emission at 322 nm and 513 nm and large Stokes shift (188 nm), compared to the unsubstituted coumarin (C-1), which shows emission at 356 nm with small Stokes shift of 46 nm. C-2 and C-3 show fluorescence in solid state, in contrast the C-1 is non-fluorescent in the solid state. The excited state intramolecular proton transfer (ESIPT) process of C-2 was fully rationalized by DFT/TDDFT calculations with optimization of the ground state (S0) and excited state (S1) geometries. TDDFT calculations propose that the large Stokes shift of C-2 and C-3 are due to the redistribution of the frontier molecular orbitals at excited states. Study of the potential energy curve of C-2 indicated that the dual emission of the C-2 is due to the simultaneous S1 and S3 emission, not the rotamer of the enol form.
机译:制备包含8-苯并噻唑(C-2)的香豆素衍生物及其二氟硼结合的衍生物(C-3)。与未取代的香豆素(C-1)相比,两种衍生物均在322 nm和513 nm处显示双重发射,并且斯托克斯位移大(188 nm),而未取代的香豆素(C-1)在356 nm处发射,斯托克斯位移小,为46 nm。 C-2和C-3在固态时显示荧光,而C-1在固态时是非荧光。通过DFT / TDDFT计算,通过优化基态(S0)和激发态(S1)几何形状,完全合理化了C-2的激发态分子内质子转移(ESIPT)过程。 TDDFT计算表明,C-2和C-3的大斯托克斯位移是由于在激发态时前沿分子轨道的重新分布所致。对C-2的势能曲线的研究表明,C-2的双重发射是由于S1和S3同时发射,而不是烯醇形式的旋转异构体。

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