首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Impact of electronic coupling, symmetry, and planarization on one-and two-photon properties of triarylamines with one, two, or three diarylboryl acceptors
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Impact of electronic coupling, symmetry, and planarization on one-and two-photon properties of triarylamines with one, two, or three diarylboryl acceptors

机译:电子耦合,对称性和平面化对具有一个,两个或三个二芳基硼基受体的三芳基胺的一光子和二光子性质的影响

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We have performed a study of the one-and two-photon absorption properties of a systematically varied series of triarylamino-compounds with one, two, or three attached diarylborane arms arranged in linear dipolar, bent dipolar, and octupolar geometries. Two-photon fluorescence excitation spectra were measured over a wide spectral range with femtosecond laser pulses. We found that on going from the single-arm to the two-and three-arm systems, the peak in two-photon absorption (2PA) cross-section is suppressed by factors of 3-11 for the lowest excitonic level associated with the electronic coupling of the arms, whereas it is enhanced by factors of 4-8 for the higher excitonic level. These results show that the coupling of arms redistributes the 2PA cross-section between the excitonic levels in a manner that strongly favors the higher-energy excitonic level. The experimental data on one-and two-photon cross-sections, ground-and excited-state transition dipole moments, and permanent dipole moment differences between the ground and the lowest excited states were compared to the results obtained from a simple Frenkel exciton model and from highly correlated quantum-chemical calculations. It has been found that planarization of the structure around the triarylamine moiety leads to a sizable increase in peak 2PA cross-section for the lowest excitonic level of the two-arm system, whereas for the three-arm system, the corresponding peak was weakened and shifted to lower energy. Our studies show the importance of the interarm coupling, number of arms, and structural planarity on both the enhancement and the suppression of two-photon cross-sections in multiarm molecules.
机译:我们已经进行了一系列系统变化的三芳基氨基化合物的单光子和双光子吸收特性的研究,该化合物具有一个,两个或三个连接的线性线性偶极,弯曲偶极和八极几何形状的连接的二芳基硼烷臂。用飞秒激光脉冲在宽光谱范围内测量了双光子荧光激发光谱。我们发现,在从单臂系统到两臂和三臂系统的过程中,对于与电子相关的最低激子能级,三光子吸收(2PA)截面的峰被3-11因子抑制。臂的耦合,而对于较高的激子水平,则通过4-8的系数增强。这些结果表明,臂的耦合以强烈有利于较高能量的激子能级的方式在激子能级之间重新分配2PA横截面。将一光子截面和两光子截面的实验数据,基态和激发态跃迁偶极矩以及基态和最低激发态之间的永久偶极矩差与从简单Frenkel激子模型获得的结果进行了比较,来自高度相关的量子化学计算。已经发现,对于两臂系统的最低激子能级,围绕三芳基胺部分的结构的平面化导致峰2PA横截面的相当大的增加,而对于三臂系统,相应的峰被削弱并且转移到较低的能量。我们的研究表明,臂间耦合,臂数和结构平面度对增强和抑制多臂分子中的两个光子截面的重要性。

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