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首页> 外文期刊>Journal of the American Chemical Society >RADIATIVE DEPOPULATION OF THE EXCITED INTRAMOLECULAR CHARGE-TRANSFER STATE OF 9-(4-(N,N-DIMETHYLAMINO)PHENYL)PHENANTHRENE
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RADIATIVE DEPOPULATION OF THE EXCITED INTRAMOLECULAR CHARGE-TRANSFER STATE OF 9-(4-(N,N-DIMETHYLAMINO)PHENYL)PHENANTHRENE

机译:9-(4-(N,N-二甲基氨基)苯基)菲的激发的分子内电荷转移态的辐射消光

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Intramolecular photoinduced electron transfer in 9-(p-N,N-dimethylanilino)phenanthrene (9DPhen) has been studied in solution. The solvent dependence of the fluorescence spectra of 9DPhen indicates that the emission occurs from a highly polar excited state. The quantum yield of fluorescence (Phi(f)) of 9DPhen is quite high and increases with increasing solvent polarity. The radiative rate constant (k(f)), however, shows a maximum for solvents of intermediate polarity, e.g., in butyl acetate a value of 2.3 x 10(8) s(-1) is attained. These results are difficult to explain within the ''TICT'' (twisted intramolecular charge transfer) model, which predicts a strongly forbidden fluorescence caused by a minimum overlap of the orbitals involved in the transition. The above-mentioned trend as a function of the solvent polarity is observed in particular donor-acceptor substituted arenes where the L(b) State of the corresponding arenes is lower in energy than the L(a) state. The quantum chemical calculations actually could explain this behavior on the basis of an ICT state which interacts with the lower lying (1)L(a) and (1)L(b) states of the acceptor. The quantum mechanical mixing of states can occur by two pathways, namely orbital mixing and mixing of configurations, and is modified by geometrical changes and by solvent polarity. The single exponential fluorescence decay, obtained with time-correlated single-photon-timing, suggests emission from an excited charge-transfer state, resulting from a solvent-induced rapid relaxation of the initial delocalized excited state of 9DPhen, obtained immediately after picosecond pulsed excitation. Picosecond transient absorption spectra in acetonitrile show a rapid decay within a few picoseconds from a less polar but delocalized excited state toward a more polar ICT state. Even the triplet state of 9DPhen in isopentane at 77 K shows a significant polar character. As a reference compound, 9-phenylphenanthrene (9PhPhen) was also examined by means of stationary and time-resolved fluorescence measurements as well as transient absorption experiments.
机译:在溶液中研究了9-(p-N,N-二甲基苯胺基)菲(9DPhen)中分子内的光诱导电子转移。 9DPhen荧光光谱的溶剂依赖性表明,发射是从高极性激发态发生的。 9DPhen的荧光(Phi(f))的量子产率很高,并且随着溶剂极性的增加而增加。然而,辐射速率常数(k(f))显示出中等极性溶剂的最大值,例如,在乙酸丁酯中,其值为2.3×10(8)s(-1)。这些结果很难在“ TICT”(扭曲的分子内电荷转移)模型中解释,该模型预测了由过渡所涉及的轨道的最小重叠引起的强烈禁止的荧光。特别是在供体-受体取代的芳烃中观察到了上述作为溶剂极性的函数的趋势,其中相应芳烃的L(b)态的能量低于L(a)态。量子化学计算实际上可以基于ICT状态解释此行为,该ICT状态与受体的较低位(1)L(a)和(1)L(b)状态相互作用。状态的量子力学混合可以通过两种途径发生,即轨道混合和构型混合,并且通过几何变化和溶剂极性而改变。与时间相关的单光子定时获得的单指数荧光衰减表明,从皮秒脉冲激发后立即获得的溶剂诱导的9DPhen初始离域激发态的快速弛豫导致了激发电荷转移态的发射。 。乙腈中的皮秒瞬态吸收光谱显示,在几皮秒内,从极性较低但离域化的激发态向极性更大的ICT状态迅速衰减。即使在77 K的异戊烷中9DPhen的三重态也显示出显着的极性特征。作为参考化合物,还通过固定和时间分辨荧光测量以及瞬态吸收实验检查了9-苯基菲(9PhPhen)。

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