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4-二甲氨基-2-羟基苯甲醛中的电子和质子转移过程。

Coupled electron and proton transfer processes in 4-dimethylamino-2-hydroxy-benzaldehyde.

机构信息

Steacie Institute for Molecular Science , National Research Council of Canada, Ottawa, K1A 0R6 Canada.

出版信息

J Phys Chem A. 2011 Sep 8;115(35):10009-17. doi: 10.1021/jp203009j. Epub 2011 Aug 17.

Abstract

TDDFT calculations, picosecond transient absorption, and time-resolved fluorescence studies of 4-dimethylamino-2-hydroxy-benzaldehyde (DMAHBA) have been carried out to study the electron and proton transfer processes in polar (acetonitrile) and nonpolar (n-hexane) solvents. In n-hexane, the transient absorption (TA) as well as the fluorescence originate from the ππ* state of the keto form (with the carbonyl group in the benzaldehyde ring), which is produced by an intramolecular proton transfer from the initially excited ππ* state of the enol form (OH group in the ring). The decay rate of TA and fluorescence are essentially identical in n-hexane. In acetonitrile, on the other hand, the TA exhibits features that can be assigned to the highly polar twisted intramolecular charge transfer (TICT) states of enol forms, as evidenced by the similarity of the absorption to the TICT-state absorption spectra of the closely related 4-dimethylaminobenzaldehyde (DMABA). As expected, the decay rate of the TICT-state of DMAHBA is different from the fluorescence lifetime of the ππ* state of the keto form. The occurrence of the proton and electron transfers in acetonitrile is in good agreement with the predictions of the TDDFT calculations. The very short-lived (∼1 ps) fluorescence from the ππ* state of the enol form has been observed at about 380 nm in n-hexane and at about 400 nm in acetonitrile.

摘要

已对 4-二甲基氨基-2-羟基苯甲醛(DMAHBA)进行了 TDDFT 计算、皮秒瞬态吸收和时间分辨荧光研究,以研究在极性(乙腈)和非极性(正己烷)溶剂中的电子和质子转移过程。在正己烷中,瞬态吸收(TA)和荧光均源自酮式(苯甲醛环中的羰基)的 ππ态,这是由最初激发的烯醇形式的 ππ态的分子内质子转移产生的(环中的 OH 基团)。在正己烷中,TA 和荧光的衰减速率基本相同。另一方面,在乙腈中,TA 表现出可以归因于烯醇形式的高度极性扭曲分子内电荷转移(TICT)态的特征,这可以通过吸收与密切相关的 4-二甲基氨基苯甲醛(DMABA)的 TICT 态吸收光谱相似来证明。正如预期的那样,TICT 态的 DMAHBA 的衰减速率与酮式的 ππ态的荧光寿命不同。质子和电子在乙腈中的转移与 TDDFT 计算的预测非常吻合。在正己烷中约 380nm 和乙腈中约 400nm 处观察到来自烯醇形式的 ππ态的寿命非常短(约 1ps)的荧光。

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