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铜卟啉中超快系间窜越的有效间接机制。

An efficient indirect mechanism for the ultrafast intersystem crossing in copper porphyrins.

机构信息

Institut des Sciences Moléculaires d'Orsay UMR 8214, CNRS Université de Paris-Sud, Orsay, France.

出版信息

J Phys Chem A. 2013 Aug 29;117(34):8111-8. doi: 10.1021/jp4008015. Epub 2013 Jun 4.

Abstract

The ultrafast dynamics of copper tetraphenylporphyrin (CuTPP), copper octaethylporphyrin (CuOEP), and of the free base tetraphenylporphyrin (H2TPP), excited in the S2 state have been investigated in the gas phase by femtosecond pump/probe experiments. The porphyrins were excited in the Soret band at 400 nm. Strikingly, the S2-S1 internal conversion in H2TPP is very rapid (110 fs), as compared to that of ZnTPP (600 fs), previously observed. In turn, CuTPP and CuOEP, excited in S2, follow an efficient and different relaxation pathway from that of other open-shell metalloporphyrins. These two molecules exhibit a sequential four-step decay ending on a slow evolution in the nanosecond range (2)S2 → (2)CT → (2)T → (2)Ground State. This latter evolution is linked to the formation of the (2)T, tripdoublet state in CuTPP, observed in the condensed phase. It is shown that an intermediate charge transfer state plays a crucial role in linking the porphyrin centered (1)ππ* and (3)ππ* configurations. A simple model is presented that allows a rapid evolution between these two configurations, via coupling of the porphyrin π system with the free d electron on the copper. The mechanism obviates the need for the spin orbit coupling within the porphyrin. The result is that these copper porphyrins can exhibit an ultrafast apparent intersystem crossing, unprecedented for organic molecules.

摘要

铜四苯基卟啉(CuTPP)、铜八乙基卟啉(CuOEP)和自由碱基四苯基卟啉(H2TPP)在气相中的超快动力学已通过飞秒泵浦/探测实验进行了研究。卟啉在 400nm 的 Soret 带中被激发。引人注目的是,与先前观察到的 ZnTPP(600fs)相比,H2TPP 的 S2-S1 内转换非常迅速(110fs)。反过来,在 S2 中被激发的 CuTPP 和 CuOEP 遵循一种与其他开壳金属卟啉不同的有效和不同的弛豫途径。这两个分子表现出顺序的四步衰减,最终在纳秒范围内缓慢演变(2)S2→(2)CT→(2)T→(2)基态。后一演变与在凝聚相中观察到的 CuTPP 中(2)T、三重态的形成有关。结果表明,中间电荷转移态在连接卟啉中心的(1)ππ和(3)ππ构象方面起着至关重要的作用。提出了一个简单的模型,允许通过卟啉π系统与铜上的自由 d 电子之间的耦合,在这两个构象之间快速演变。该机制避免了卟啉内自旋轨道耦合的需要。结果是这些铜卟啉可以表现出超快的表观系间窜跃,这在有机分子中是前所未有的。

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