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有效π电子数和对称性微扰对低聚芴双光子吸收的影响。

Effective π-electron number and symmetry perturbation effect on the two-photon absorption of oligofluorenes.

作者信息

Abegão Luis M G, Cocca Leandro H Z, Mulatier Jean-Christophe, Pitrat Delphine, Andraud Chantal, Misoguti Lino, Mendonça Cleber R, Vivas Marcelo G, De Boni Leonardo

机构信息

Photonics Group, Instituto de Física de São Carlos, Universidade de São Paulo, CP 369, 13560-970 São Carlos, SP, Brazil.

出版信息

Phys Chem Chem Phys. 2021 Sep 14;23(34):18602-18609. doi: 10.1039/d1cp02553h. Epub 2021 Aug 17.

Abstract

Fluorene-based molecules exhibit significant nonlinear optical responses and multiphoton absorption in the visible region, which, combined with the high fluorescence quantum yield in organic solvents, could make this class of materials potentially engaging in diverse photonics applications. Thus, herein, we have determined the two-photon absorption (2PA) of oligofluorenes containing three, five, and seven repetitive units by employing the wavelength-tunable femtosecond Z-scan technique. Our outcomes have shown that the 2PA cross-section in oligofluorenes presents an enhanced value of around 18 GM per N, in which N is the effective number of π-electrons, for the pure 2PA allowed transition (1A-like → 2A-like). Furthermore, a weak 2PA transition was observed in the same spectral region strongly allowed by one-photon absorption (1A-like → 1B-like). This last result suggests a molecular symmetry perturbation, probably induced by the molecular disorder triggered by the increase of moieties in the oligofluorene structure. We have calculated the permanent dipole moment difference related to the lowest-energy transition using the Lippert-Matagaformalism and the 2PA sum-over-states approach to confirm this assumption. Moreover, we have estimated the fundamental limits for the 2PA cross-section in oligofluorenes.

摘要

芴基分子在可见光区域表现出显著的非线性光学响应和多光子吸收,再加上在有机溶剂中具有较高的荧光量子产率,这使得这类材料有可能应用于多种光子学领域。因此,在本文中,我们采用波长可调谐飞秒Z扫描技术测定了含有三个、五个和七个重复单元的低聚芴的双光子吸收(2PA)。我们的结果表明,对于纯2PA允许跃迁(1A类→2A类),低聚芴中的2PA截面每N呈现出约18 GM的增强值,其中N是π电子的有效数量。此外,在单光子吸收强烈允许的相同光谱区域(1A类→1B类)观察到了微弱的2PA跃迁。最后这一结果表明分子对称性受到扰动,这可能是由低聚芴结构中基团增加引发的分子无序所导致的。我们使用Lippert-Mataga形式和2PA态叠加方法计算了与最低能量跃迁相关的永久偶极矩差,以证实这一假设。此外,我们还估计了低聚芴中2PA截面的基本极限。

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