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首页> 外文期刊>Journal of the American Chemical Society >Control over charge separation in phthalocyanine-anthraquinone conjugates as a function of the aggregation status
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Control over charge separation in phthalocyanine-anthraquinone conjugates as a function of the aggregation status

机译:酞菁-蒽醌共轭物中电荷分离的控制,取决于聚集状态

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摘要

We have prepared three isomeric donor-acceptor systems, in which two phthalocyanine (Pc) units have been attached to the 1-, 5- (1a), 1-, 8- (1b), or 2-, 6- (1c) positions of a central anthraquinone (AQ) moiety, leading to packed (1b) or extended (1a and 1c) topologies. The electronic interactions between the donor and the acceptor in the ground state or in the excited states have been studied by different electrochemical and photophysical techniques. Due to the markedly different topologies, we have been able to modify these interactions at the intramolecular level and, by a proper choice of the solvent environment, at the intermolecular level within aggregates. In triad 1b, the ZnPc units are forced to pi-stack cofacially and out of the plane of the AQ ring. Consequently, this molecule shows strong inter-Pc interactions that give rise to intramolecular excitonic coupling but a relatively small electronic communication with the AQ acceptor through the vinyl spacers. On the contrary, the 1-, 5- or 2-, 6- connections of triads 1a and 1c allow for an efficient pi-conjugation between the active units that extends over the entire planar system. These two molecules tend to aggregate in aromatic solvents by pi-pi stacking, giving rise to J-type oligomers. Photoexcitation of the Pc units of 1a-c results in the formation of the Pc center dot+-AQ(center dot-) charge transfer state. We have demonstrated that the kinetics of these electron transfer reactions is greatly dependent on the aggregation status of the triads.
机译:我们准备了三个异构体供体-受体系统,其中两个酞菁(Pc)单元已连接到1-,5-(1a),1-,8-(1b)或2-,6-(1c)中央蒽醌(AQ)部分的位置,导致堆积(1b)或扩展(1a和1c)拓扑。已通过不同的电化学和光物理技术研究了基态或激发态下供体与受体之间的电子相互作用。由于拓扑结构显着不同,我们已经能够在分子内水平以及通过适当选择溶剂环境在聚集体的分子间水平上修饰这些相互作用。在三合会1b中,ZnPc单元被迫从界面上π堆积,并离开AQ环的平面。因此,该分子显示出强烈的Pc间相互作用,这会引起分子内激子偶联,但通过乙烯基间隔基与AQ受体的电子通讯相对较小。相反,三重轴1a和1c的1、5或2或6连接允许在整个平面系统上延伸的有源单元之间的有效π共轭。这两个分子倾向于通过pi-pi堆积在芳香族溶剂中聚集,从而产生J型低聚物。 1a-c的Pc单元的光激发导致形成Pc中心点+ -AQ(中心点-)电荷转移状态。我们已经证明,这些电子转移反应的动力学极大地取决于三单元组的聚集状态。

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