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逐渐扭曲的苯酚-吡啶基双芳基系列中的光诱导耦合电荷和质子转移。

Photoinduced coupled charge and proton transfers in gradually twisted phenol-pyridinium biaryl series.

机构信息

Institut de Sciences des Matériaux de Mulhouse, LRC CNRS 7228, Université de Haute Alsace, 15 rue Jean Starcky, 68057 Mulhouse, France.

出版信息

J Phys Chem A. 2010 Feb 25;114(7):2401-11. doi: 10.1021/jp904601r.

Abstract

A detailed photophysical analysis of a phenol-pyridinium biphenyl series with gradual twisted geometry is presented in this paper. The low-energy CT absorption band of the compounds undergoes a decrease of intensity with a progressive blue shift by increasing the twist angle of the central bond (Theta(AD)). These effects are well described and quantified within the framework of the Mulliken-Murrel approach, which allows us to extend such a model to the charge-shift process. The biaryl compounds exhibit broadened fluorescence bands assigned to the radiative deactivation of a charge shift (CSh) species generated by an intramolecular twisting relaxation of the locally excited (LE) state. Parallel to the rotamerism of the central single bond, excited-state proton-transfer (ESPT) processes are occurring from both excited states and lead to the nonemissive phenolate forms. Solvatochromic shifts of the emission bands are correlated by the Kamlet-Taft parameters (pi*, alpha, and beta). The correlation first confirms the pi* dependence of the CSh band shift but also demonstrates a clear beta dependence. The contribution of the latter parameter to the band hypsochromy is markedly increasing with Theta(AD). Such an unusual effect was ascribed to a much higher ESPT rate relative to the highly twisted conformation with respect to that of more planar geometry. Despite the suppression of the geometrical relaxation in ethanol glass at 77 K, the fluorescence of the phenolate species produced by ESPT from LE state is detected. The relative increase of its fluorescence band intensity with Theta(AD) confirms the gradual enhancement of the excited states acidity.

摘要

本文对一系列具有逐渐扭曲几何形状的苯酚-吡啶联苯进行了详细的光物理分析。化合物的低能 CT 吸收带的强度随着中心键扭转角(Theta(AD))的增加而逐渐蓝移,其强度逐渐降低。这些效应在 Mulliken-Murrel 方法的框架内得到了很好的描述和量化,该方法允许我们将这种模型扩展到电荷转移过程。联苯化合物表现出展宽的荧光带,归因于通过局部激发(LE)态的分子内扭转弛豫产生的电荷转移(CSh)物种的辐射去活化。与中心单键的旋转异构体平行,从两个激发态发生激发态质子转移(ESPT)过程,并导致非发光的酚盐形式。通过 Kamlet-Taft 参数(pi*,alpha 和 beta)对发射带的溶剂化变色进行了相关性分析。该相关性首先证实了 CSh 带位移与 pi*的依赖性,但也证明了与 beta 的明显依赖性。随着 Theta(AD)的增加,后一个参数对带蓝移的贡献显著增加。这种不寻常的效应归因于相对于更平面几何形状的高度扭曲构象,ESPT 的速率要高得多。尽管在 77 K 的乙醇玻璃中抑制了几何弛豫,但仍检测到由 LE 态 ESPT 产生的酚盐物种的荧光。随着 Theta(AD)的增加,其荧光带强度的相对增加证实了激发态酸度的逐渐增强。

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