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πσ* 态在 4-(二甲基氨基)苯甲腈分子内电荷转移中的作用。

The role of the πσ* state in intramolecular charge transfer of 4-(dimethylamino)benzonitrile.

机构信息

Department of Chemistry and The Center for Laser and Optical Spectroscopy, The University of Akron, Akron, Ohio 44325-3601, USA.

出版信息

Phys Chem Chem Phys. 2011 Apr 21;13(15):6779-83. doi: 10.1039/c0cp02706e. Epub 2011 Mar 11.

Abstract

The solvent-polarity dependence and temporal characteristics of the transient absorption of 4-(dimethylamino)benzonitrile, DMABN, and 4-(dimethylamino)benzethyne, DMABE, demonstrate the presence of the πσ*-state absorption at about 700 nm and the ππ* (LE)-state absorption at about 520 nm and 450 nm. The rise and decay times of the πσ*-state transient differ from those of the ππ*-state transients in both compounds. Moreover, the peak position of the πσ*-state absorption is blue-shifted and more intense in acetonitrile as compared to n-hexane, whereas the band positions of the ππ*-state absorptions are essentially the same in the two solvents. For DMABN in acetonitrile, the rise time (∼4.3 ps) of the twisted intramolecular charge transfer (TICT)-state transient at 330 nm is identical to the decay time of the πσ*-state transient. The 4.8 ns decay time of the TICT-state absorption of DMABN is longer than the 2.9 ns decay time of the intramolecular charge-transfer (ICT) fluorescence, indicating that the fluorescent ICT state differs from the TICT state observed in transient absorption. These results are consistent with the presence of a low-lying πσ* state in DMABN (and DMABE), and the role the πσ* state plays in the formation of the TICT state of DMABN.

摘要

溶剂极性对 4-(二甲氨基)苯甲腈(DMABN)和 4-(二甲氨基)苯乙炔(DMABE)瞬态吸收的影响以及它们的时间特性表明,在大约 700nm 处存在πσ*-态吸收,在大约 520nm 和 450nm 处存在ππ*(LE)-态吸收。两种化合物中,πσ*-态瞬态的上升和衰减时间与ππ*-态瞬态的不同。此外,与正己烷相比,在乙腈中,πσ*-态吸收的峰位置发生蓝移且强度更大,而在两种溶剂中,ππ*-态吸收的谱带位置基本相同。在乙腈中的 DMABN 中,在 330nm 处扭曲的分子内电荷转移(TICT)态瞬态的上升时间(约 4.3ps)与πσ*-态瞬态的衰减时间相同。DMABN 的 TICT 态吸收的 4.8ns 衰减时间长于分子内电荷转移(ICT)荧光的 2.9ns 衰减时间,这表明荧光 ICT 态与在瞬态吸收中观察到的 TICT 态不同。这些结果与 DMABN(和 DMABE)中存在低能πσ态以及πσ态在 DMABN 的 TICT 态形成中所起的作用一致。

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