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支化对苯乙烯基嘧啶线性和非线性光学性质的影响。

Branching effect on the linear and nonlinear optical properties of styrylpyrimidines.

作者信息

Kournoutas Fotis, Fihey Arnaud, Malval Jean-Pierre, Spangenberg Arnaud, Fecková Michaela, le Poul Pascal, Katan Claudine, Robin-le Guen Françoise, Bureš Filip, Achelle Sylvain, Fakis Mihalis

机构信息

Department of Physics, University of Patras, Greece, GR-26504 Patras, Greece.

Univ Rennes, CNRS, ISCR (Institut des Sciences Chimiques de Rennes) - UMR 6226, F 35000 Rennes, France.

出版信息

Phys Chem Chem Phys. 2020 Feb 19;22(7):4165-4176. doi: 10.1039/c9cp06476a.

Abstract

This contribution aims at investigating the branching effect on the steady state, time resolved fluorescence and two-photon absorption (2PA) properties of dimethylamino and diphenylamino substituted styrylpyrimidine derivatives, by means of a combined experimental and theoretical study. In contrast to classical branched molecules with a triphenylamine central core and electron accepting groups at the periphery, here, branched molecules with reverse topology and different symmetries are examined, namely a styrylpyrimidine group is used as the electron withdrawing core and dimethylamino or diphenylamino donors are incorporated at the periphery. Besides, compared to the great majority of existing branched systems, the herein studied molecules do not have C3 symmetry. For this reason, the region of the linear and non-linear optical spectra of the two and three branched chromophores is actually similar. Interestingly, while the one-photon absorption spectra of one-branched systems versus two- or three-branched ones are spectrally shifted, there is almost no spectral shift in the main 2PA spectral region. Meanwhile, there is still an enhancement of both linear and nonlinear optical responses. Overall, here we developed a strategy that enhances the 2PA response while maintaining the spectral position. Specifically, 2PA cross section values as high as 500 GM have been obtained for the diphenylamino A-(π-D)3 molecule in dichloromethane.

摘要

本研究旨在通过实验与理论相结合的方法,研究二甲基氨基和二苯基氨基取代的苯乙烯基嘧啶衍生物的支化对其稳态、时间分辨荧光及双光子吸收(2PA)性质的影响。与具有三苯胺中心核且外围带有电子接受基团的经典支化分子不同,本文研究的是具有反向拓扑结构和不同对称性的支化分子,即将苯乙烯基嘧啶基团用作吸电子核,并在其外围引入二甲基氨基或二苯基氨基供体。此外,与绝大多数现有的支化体系相比,本文所研究的分子不具有C3对称性。因此,二支化和三支化发色团的线性和非线性光谱区域实际上是相似的。有趣的是,单支化体系与二支化或三支化体系的单光子吸收光谱存在光谱位移,而在主要的2PA光谱区域几乎没有光谱位移。同时,线性和非线性光学响应均有所增强。总体而言,本文开发了一种在保持光谱位置的同时增强2PA响应的策略。具体而言,二苯基氨基A-(π-D)3分子在二氯甲烷中的2PA截面值高达500 GM。

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