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Intersystem Crossing versus Electron Transfer in Porphyrin-Based Donor−Bridge−Acceptor Systems: Influence of a Paramagnetic Species

机译:基于卟啉的供体桥受体系统中的系统间交叉与电子转移:顺磁性物种的影响

摘要

We have investigated how the spin state of an acceptor influences the photophysical processes in a donor−bridge−acceptor (D−B−A) system. The system of choice has zinc porphyrin as the electron donor and high- or low-spin iron(III) porphyrin as the acceptor. The spin state of the acceptor porphyrin is switched simply by coordinating imidazole ligands to the metal center. The D−A center−center distance is 26 Å, and the bridging chromophore varies from π-conjugated to a σ-bonded system. The presence of a high-spin iron(III) porphyrin in such systems has previously been shown to significantly enhance intersystem crossing in the remote zinc porphyrin donor, whereas no significant electron transfer to the iron porphyrin acceptor was observed, even though the thermodynamics would allow for photoinduced electron transfer. Here, we demonstrate that by switching the acceptor to a low-spin state, the dominating photophysical process is drastically changed; the low-spin system shows long-range electron transfer on the picosecond time-scale, and intersystem crossing occurs at its “normal” rate.
机译:我们已经研究了受体的自旋状态如何影响供体桥受体(DB-A)系统中的光物理过程。选择的系统以锌卟啉为电子供体,高或低自旋铁(III)卟啉为受体。通过将咪唑配体配位至金属中心,即可简单地切换受体卟啉的自旋状态。 D-A中心至中心的距离为26,桥接生色团从π共轭到σ键系统变化。先前已证明在此类系统中高自旋铁(III)卟啉的存在可显着增强偏远锌卟啉供体的系统间穿越,尽管热力学允许,但未观察到明显的电子转移至卟啉铁受体。用于光致电子转移。在这里,我们证明了通过将受体切换到低自旋状态,可以显着改变主要的光物理过程。低自旋系统在皮秒级的时间尺度上显示出远距离电子传输,并且系统间交叉以其“正常”速率发生。

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