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首页> 外文期刊>Chemistry: A European journal >Electronic and Vibronic Contributions to Two-Photon Absorption in Donor-Acceptor-Donor Squaraine Chromophores
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Electronic and Vibronic Contributions to Two-Photon Absorption in Donor-Acceptor-Donor Squaraine Chromophores

机译:电子和振动对供体-受体供体方型发色团中的两个光子吸收的贡献。

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Many squaraines have been observed to exhibit two-photon absorption at transition energies close to those of the lowest energy one-photon electronic transitions. Here, the electronic and vibronic contributions to these low-energy two-photon absorptions are elucidated by performing correlated quantum-chemical calculations on model chromophores that differ in their terminal donor groups (diarylaminothienyl, indolenylidenemethyl, dimethylaminopolyenyl, or 4-(dimethylamino)phenylpolyenyl). For squaraines with diarylaminothienyl and dimethylaminopolyenyl donors and for the longer examples of 4-(dimethylamino)phenylpolyenyl donors, the calculated energies of the lowest two-photon active states approach those of the lowest energy one-photon active (1B(u)) states. This is consistent with the existence of purely electronic channels for low-energy two-photon absorption (TPA) in these types of chromophores. On the other hand, for all squaraines containing indolinylidenemethyl donors, the calculations indicate that there are no low-lying electronic states of appropriate symmetry for TPA. Actually, we find that the lowest energy TPA transitions can be explained through coupling of the one-photon absorption (OPA) active 1B(u) state with b(u) vibrational modes. Through implementation of Herzberg-Teller theory, we are able to identify the vibrational modes responsible for the low-energy TPA peak and to reproduce, at least qualitatively, the experimental TPA spectra of several squaraines of this type.
机译:已经观察到许多方型电子在跃迁能量接近最低能量的单光子电子跃迁的跃迁能量下表现出双光子吸收。在这里,通过对模型生色团的末端供体基团(二芳基氨基噻吩基,吲哚烯基亚甲基,二甲基氨基多烯基或4-(二甲基氨基)苯基多烯基)不同的模型发色团进行相关的量子化学计算,阐明了对这些低能双光子吸收的电子和振动贡献。 。对于具有二芳基氨基噻吩基和二甲基氨基多烯基供体的方晶以及对于4-(二甲基氨基)苯基多烯基供体的较长实例,最低的两个光子活性态的计算能量接近最低能量的一个光子活性(1B(u))态。这与这些类型的生色团中存在低能双光子吸收(TPA)的纯电子通道是一致的。另一方面,对于所有含有吲哚基亚烷基甲基供体的方晶,计算表明,对于TPA,没有适当对称的低洼电子态。实际上,我们发现可以通过将单光子吸收(OPA)有源1B(u)状态与b(u)振动模式耦合来解释最低的能量TPA跃迁。通过实施Herzberg-Teller理论,我们能够识别出导致低能量TPA峰的振动模式,并至少定性地重现了该类型的几种qua鼠的实验TPA光谱。

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