首页> 外文期刊>Journal of Porphyrins and Phthalocyanines >Light-induced hole transfer in a hypervalent phosphorus(V) octaethylporphyrin bearing an axially linked bis(ethylenedithio)tetrathiafulvalene
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Light-induced hole transfer in a hypervalent phosphorus(V) octaethylporphyrin bearing an axially linked bis(ethylenedithio)tetrathiafulvalene

机译:含轴向键合双(乙烯二硫代)四硫富瓦烯的高价磷(V)八乙基卟啉中的光诱导空穴转移

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A phosphorus(V) porphyrin bearing an axially linked bis(ethylenedithio)tetrathiafulvalene, dyad 1, and its radical cation phosphorus(V) porphyrin-O-CH2-(bis(ethylenedithio)tetrathiafulvalene)+•, dyad 2, have been synthesized and studied as an electron hole donor-acceptor system. The absorption spectrum of dyad 1 does not show evidence for electronic coupling between the porphyrin and the bis(ethylenedithio)tetrathiafulvalene (BEDT-TTF) moieties. However, the steady-state fluorescence of the porphyrin chromophore is quantitatively quenched and its transient fluorescence lifetime is shortened compared to a reference compound in which the BEDT-TTF moiety is replaced by a methoxy group. Chemical oxidation of the BEDT-TTF moiety in dyad 1 to give dyad 2 results in recovery of the fluorescence intensity. This behavior suggests that the fluorescence quenching in dyad 1 is the result of intramolecular hole transfer from the the excited porphyrin to the BEDT-TTF moiety. The occurence of hole transfer in dyad 1 is confirmed by freeze-trapping and time-resolved electron paramagnetic resonance (EPR) measurements. The freeze-trapping EPR experiments show that steady-state irradiation of the complex leads to accumulation of its radical cation (dyad 2) while the transient EPR measurements at 5 °C show that flash irradiation of dyad 1 results in formation of a radical-ion pair with a lifetime of at least 300 ns. The triplet state of the porphyrin, which is formed by intersystem crossing and gives a strong transient EPR spectrum in the reference compound, is not observed for dyad 1. Together, the fluorescence quenching and the polarization pattern of the radical pair suggest that the hole transfer occurs from the excited singlet state of the porphyrin with high efficiency.
机译:合成了带有轴向连接的双(亚乙基二硫代)四硫富瓦烯二价双的磷(V)卟啉及其自由基阳离子磷(V)卟啉-O-CH2-(双(亚乙基二硫代)四硫富瓦烯)+•的二价阳离子。被研究为电子空穴供体-受体系统。 dyad 1的吸收光谱未显示出卟啉与双(亚乙基二硫代)四硫富瓦烯(BEDT-TTF)部分之间电子偶联的证据。但是,与其中BEDT-TTF部分被甲氧基取代的参考化合物相比,卟啉发色团的稳态荧光被定量淬灭,并且其瞬态荧光寿命缩短。二元组1中BEDT-TTF部分的化学氧化产生二元组2导致荧光强度的恢复。此行为表明二元组1中的荧光猝灭是分子内空穴从受激发的卟啉转移至BEDT-TTF部分的结果。通过冻结捕获和时间分辨电子顺磁共振(EPR)测量,可以确认二元组1中空穴传输的发生。冷冻捕集EPR实验表明,复合物的稳态辐射导致其自由基阳离子(二元体2)的积累,而在5°C下的瞬态EPR测量表明,二元体1的快速辐射导致形成自由基离子。对的寿命至少为300 ns。对于二元组1,未观察到通过系统间交叉形成的卟啉的三重态,并在参考化合物中提供了很强的瞬态EPR光谱。加在一起,荧光猝灭和自由基对的偏振模式表明空穴转移从卟啉的激发单重态高效发生。

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