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Theoretical study of the two-photon absorption properties of several asymmetrically substituted stilbenoid molecules

机译:几个不对称取代的类苯乙烯类分子的双光子吸收特性的理论研究

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Two-photon absorption (TPA) properties of noncentrosymmetric pi-conjugated stilbenoid molecules with D-pi-A structures, TPA spectra of which have been reported [L. Antonov , Phys. Chem. Chem. Phys. 5, 1193 (2003)], have been investigated theoretically by ab initio molecular orbital methods. The difference in the observed one-photon absorption and TPA spectra among compounds with the same donor (D) and acceptor (A) units is well reproduced by the present calculations, although the calculated excitation energies are overestimated by the configuration interaction with single excitation method used. It was found that the spectral differences among the compounds were mainly due to the deviation from the planar structure by intramolecular rotation around the N - C (phenyl) bond of the N-benzilideneanilines having the C = N linkage as the central pi bridge. Substitution of the end donor or acceptor groups with weaker ones leads to a decrease in the TPA intensity of the lowest pi-pi(*) TPA states, resulting mainly from the decrease in the dipole moment of the excited states. The total TPA cross section spectra have been separated into contributions of the dipolar term, which appear only in noncentrosymmetric systems, and the three-state term, which appear in any systems irrespective of symmetry. The dipolar term predominates only for the lowest pi-pi(*) state, while for the higher excited states the three-state terms become predominant. An analysis employing the index R-f defined with the transition polarizability shows that the TPA properties of the higher excited states are well described by the three-state approximation mediated by the lowest pi-pi(*) state. The differences found between the centrosymmetric and dipolar molecules in the enhancement mechanism of the TPA intensity by substituting the end groups with strong donors are discussed by comparison with the TPA properties of azobenzenes symmetrically substituted with the same donors. (c) 2007 American Institute of Physics.
机译:具有D-pi-A结构的非中心对称pi共轭类二苯乙烯类分子的双光子吸收(TPA)特性,其TPA光谱已有报道[L.安东诺夫化学化学物理5,1193(2003)],已通过从头算分子轨道方法进行了理论研究。尽管通过单激发方法的构型相互作用高估了计算出的激发能,但通过本计算可以很好地重现具有相同施主(D)和受主(A)单元的化合物之间观察到的单光子吸收和TPA光谱的差异。用过的。发现化合物之间的光谱差异主要是由于围绕具有C = N键作为中心π桥的N-苯甲撑苯胺的N-C(苯基)键的分子内旋转而引起的与平面结构的偏离。最终的供体或受体基团被弱的取代会导致最低pi-pi(*)TPA态的TPA强度降低,这主要是由于激发态的偶极矩降低所致。总的TPA横截面光谱已分为偶极项(仅出现在非中心对称系统中)和三态项(不考虑对称性)出现在所有系统中。对于最低的pi-pi(*)状态,偶极项占主导地位,而对于较高的激发态,三态项占主导地位。使用由跃迁极化率定义的指标R-f进行的分析表明,高激发态的TPA特性可以通过最低pi-pi(*)态介导的三态近似很好地描述。通过与用相同的供体对称取代的偶氮苯的TPA性质进行比较,讨论了在中心对称和偶极分子之间通过强供体取代端基而在TPA强度增强机制中发现的差异。 (c)2007年美国物理研究所。

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