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Synthesis, Two-Photon Absorption and Optical Limiting Properties of Multibranched Styryl Derivatives Based on 1,3,5-Triazine

机译:基于1,3,5-三嗪的多支链苯乙烯衍生物的合成,双光子吸收和光极限性质

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Five new multi-branched two-photon absorption triazine chromophores (T1-T5) with different donor strength, conjugation length, and direction of charge transfer have been designed and synthesized. The one-photon fluorescence, fluorescence quantum yields, and two-photon properties have been investigated. The two-photon absorption (2PA) cross sections measured by the open aperture Z-scan technique were determined to be 447, 854, 1023, 603, and 766 GM for T1, T2, T3, T4, and T5, respectively. This result indicates that their 2PA cross section values (sigma) increase with increasing electron-donating strength of the end group, extending the conjugation length of the system, and introducing electron-withdrawing perfluoroalkyl as side groups to the end donor. In addition, the sigma value of T5 is also larger than that of T1, which provides evidence that the sigma value is relative to the direction of charge transfer (from the ends to the center of the molecule or from the center to the ends). Moreover, significant enhancement of the two-photon absorption cross section was achieved by introducing a thiophene moiety to a conjugated C(velence)C bond. At the same time, the optical limiting behavior for these chromophores was studied by using a focused 800 nm laser beam with pulses of 140 fs duration. It was found that these molecules also exhibit good optical limiting properties. These initial results clearly demonstrate that multi-branched triazine chromophores are a highly suitable class of two-photon absorbing materials.
机译:设计并合成了五个具有不同供体强度,共轭长度和电荷转移方向的新型多支二光子吸收三嗪发色团(T1-T5)。已经研究了单光子荧光,荧光量子产率和双光子性质。通过开孔Z扫描技术测得的T1,T2,T3,T4和T5的两光子吸收(2PA)截面分别为447、854、1023、603和766 GM。该结果表明,它们的2PA截面值(σ)随着端基的供电子强度的增加,系统的共轭长度的延长,以及将吸电子的全氟烷基作为侧基引入端供体而增加。此外,T5的sigma值也大于T1的sigma值,这提供了sigma值相对于电荷转移方向(从分子的末端到中心或从中心到末端)的证据。此外,通过将噻吩部分引入共轭的C(velence)C键,可以显着提高双光子吸收截面。同时,通过使用聚焦时间为140 fs的800 nm聚焦激光束研究了这些生色团的光学极限行为。已发现这些分子还表现出良好的光学限制性质。这些初始结果清楚地表明,多支化三嗪发色团是高度适合的两光子吸收材料。

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