首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Presence of Two Emissive Minima in the Lowest Excited State of a Push-Pull Cationic Dye Unequivocally Proved by Femtosecond Up-Conversion Spectroscopy and Vibronic Quantum-Mechanical Computations
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Presence of Two Emissive Minima in the Lowest Excited State of a Push-Pull Cationic Dye Unequivocally Proved by Femtosecond Up-Conversion Spectroscopy and Vibronic Quantum-Mechanical Computations

机译:飞秒上转换光谱法和振动电子量子力学计算清楚地证明了推挽阳离子染料的最低激发态中的两个发射极小值的存在

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摘要

The long-standing controversy about the presence of two different emissive minima in the lowest excited state of the cationic push-pull dye o-(p-dimethylamino-styryl)-methylpyridinium (DASPMI) was definitively proved through the observation of dual emission, evidenced by both experimental (femtosecond up-conversion measurements) and theoretical (density functional theory calculations) approaches. From the fluorescence up-conversion data of DASPMI in water, the time resolved area normalized spectra (TRANES) were calculated, showing one isoemissive point and therefore revealing the presence of two distinct emissive minima of the excited state potential energy hypersurface with lifetimes of 0.51 and 4.8 ps. These spectroscopic techniques combined with proper data analysis allowed us to discriminate the sub-picosecond emitting state from the occurrence of ultrafast solvation dynamics and to disentangle the overlapping fluorescence (very close in energy) of the two components. Vibronic computations based on TD-DFT potential energy surfaces fully confirm those results and provide deeper insights about the key factors playing a role in determining the overall result. The two emissive minima have different structural and electronic characteristics: on one hand, the locally excited (LE) minimum has a flat geometry and an electric dipole moment smaller than the ground state; on the other hand, the twisted-intramolecular-charge-transfer (TICT) minimum shows a rotation of the methylpyridinium moiety with respect to the rest of the structure, and has an electric dipole moment significantly larger than the ground state.
机译:阳离子推挽染料o-(p-二甲基氨基-苯乙烯基)-甲基吡啶(DASPMI)在最低激发态下存在两个不同的发射最小值的长期争论已通过双发射的观察得到了明确证明。通过实验(飞秒上转换测量)和理论(密度泛函理论计算)方法来实现。根据DASPMI在水中的荧光上转换数据,计算了时间分辨面积归一化光谱(TRANES),显示了一个等发射点,因此揭示了存在两个不同的发射态极小值的激发态势能超表面,其寿命为0.51和4.8 ps。这些光谱技术与适当的数据分析相结合,使我们能够将亚皮秒级发射状态与超快溶剂化动力学的发生区分开,并解开了两个组分的重叠荧光(能量非常接近)。基于TD-DFT势能面的振动电子计算完全证实了这些结果,并提供了有关在决定总体结果中起作用的关键因素的更深刻见解。这两个发射极小值具有不同的结构和电子特性:一方面,局部激发(LE)极小值具有平坦的几何形状,并且电偶极矩小于基态。另一方面,扭曲的分子内电荷转移(TICT)最小值显示了甲基吡啶部分相对于结构其余部分的旋转,并且其电偶极矩明显大于基态。

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