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Structure−Property Relationships for Two-Photon Absorbing Chromophores: Bis-Donor Diphenylpolyene and Bis(styryl)benzene Derivatives

机译:两光子吸收发色团的结构-性质关系:双供体二苯多烯和双(苯乙烯基)苯衍生物

摘要

The two-photon absorption properties of a series of bis dialkylamino- or diarylamino-substituted diphenylpolyenes and bis(styryl)benzenes have been investigated. Two-photon absorption cross sections, δ, as large as 1420 × 10^(-50) cm^4 s/photon-molecule have been observed for molecules with this general bis-donor structure. The effect of the type and length of the conjugated chain and of dialkylamino or diarylamino substitution on the position and magnitude of the peak two-photon absorptivity is reported. The transition dipole moments for the transitions between the ground state and the first excited singlet state (M_(ge)) and between the first and second excited singlet states (M_(ee‘)) have been estimated using experimental data from the one- and two-photon spectra. It was found that increases in chain length result mainly in an increase in M_(ge), whereas the addition of donor end groups or going from diphenylpolyene- to phenylene-vinylene-type bridges leads primarily to an increase in Mee‘. The trends in the energy of the lowest excited singlet states and in the transition moments for the diphenylpolyene series as a function of chain length are in agreement with those calculated by quantum mechanical methods. These results furnish a link between structural features in these classes of molecules and the electronic dipole couplings and state energies that control the strength of the two-photon absorption. In bis(aminophenyl)polyenes containing up to four double bonds (m) the lowest excited singlet state is a B_u state, as opposed to the case of simple polyenes and diphenylpolyenes, for which it is an A_g state for m > 2. The relationship of the state ordering in these systems with the observed values of the radiative and nonradiative decay rates is also discussed.
机译:研究了一系列双二烷基氨基或二芳基氨基取代的二苯基多烯和双(苯乙烯基)苯的双光子吸收特性。对于具有这种一般双供体结构的分子,已经观察到双光子吸收截面δ大至1420×10 ^(-50)cm ^ 4 s /光子分子。报道了共轭链的类型和长度以及二烷基氨基或二芳基氨基取代对峰值双光子吸收率的位置和幅度的影响。在基态和第一激发单重态(M_(ge))之间以及在第一和第二激发单重态(M_(ee')之间)的跃迁的跃迁偶极矩已使用来自双光子光谱。已经发现,链长的增加主要导致M_(ge)的增加,而给体端基的添加或从二苯多烯-至亚苯基-亚乙烯基型桥的添加主要导致Mee'的增加。最低激发单线态的能量和二苯基多烯系列的跃迁矩随链长的变化趋势与通过量子力学方法计算得出的趋势一致。这些结果为这类分子的结构特征与电子偶极子耦合以及控制双光子吸收强度的态能之间提供了联系。在最多包含四个双键(m)的双(氨基苯基)多烯中,最低的激发单重态为B_u状态,与简单的多烯和二苯基多烯的情况相反,对于m> 2,它为A_g状态。还讨论了在这些系统中具有辐射衰减率和非辐射衰减率的观测值的状态排序。

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