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激发波长对极性溶剂中供体-受体复合物超快电荷复合动力学的影响。

Effect of the excitation wavelength on the ultrafast charge recombination dynamics of donor-acceptor complexes in polar solvents.

作者信息

Nicolet Olivier, Banerji Natalie, Pagès Stéphane, Vauthey Eric

机构信息

Department of Physical Chemistry, University of Geneva, 30 quai Ernest-Ansermet, CH-1211 Geneva, Switzerland.

出版信息

J Phys Chem A. 2005 Sep 22;109(37):8236-45. doi: 10.1021/jp0532216.

Abstract

The effect of the excitation wavelength on the charge recombination (CR) dynamics of several donor-acceptor complexes (DACs) composed of benzene derivatives as donors and of tetracyanoethylene or pyromellitic dianhydride as acceptors has been investigated in polar solvents using ultrafast time-resolved spectroscopy. Three different wavelength effects have been observed. (1) With complexes exhibiting two well-separated charge-transfer bands, the CR dynamics was found to be slower by a factor of about 1.5 upon excitation in the high-energy band. This effect was measured in both fast and slow relaxing solvents and was discussed in terms of different DAC geometries. (2) When the CR is faster than diffusive solvation, a slowing down of the CR with increasing excitation wavelength accompanied by an increase of the nonexponential character of the dynamics was measured. This effect appears only when exciting on the red edge of the charge-transfer absorption band. (3) When the driving force for CR is small, both nonequilibrium (hot) and thermally activated CR pathways can be operative. The results obtained with such a complex indicate that the relative contribution of these two paths depends on the excitation wavelength.

摘要

利用超快时间分辨光谱,在极性溶剂中研究了激发波长对几种由苯衍生物作为供体、四氰基乙烯或均苯四甲酸二酐作为受体组成的供体-受体复合物(DACs)电荷复合(CR)动力学的影响。观察到了三种不同的波长效应。(1)对于具有两个明显分离的电荷转移带的复合物,发现在高能带激发时,CR动力学减慢约1.5倍。在快速和慢速弛豫溶剂中均测量到了这种效应,并根据不同的DAC几何结构进行了讨论。(2)当CR比扩散溶剂化快时,测量到随着激发波长增加CR减慢,同时动力学的非指数特征增加。这种效应仅在电荷转移吸收带的红边激发时出现。(3)当CR的驱动力较小时,非平衡(热)和热激活CR途径都可能起作用。用这样一种复合物获得的结果表明,这两条路径的相对贡献取决于激发波长。

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