首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Potassium Ion Controlled Switching of Intra-to Intermolecular Electron Transfer in Crown Ether Appended Free-Base Porphyrin-Fullerene Donor-Acceptor Systems
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Potassium Ion Controlled Switching of Intra-to Intermolecular Electron Transfer in Crown Ether Appended Free-Base Porphyrin-Fullerene Donor-Acceptor Systems

机译:冠醚附加游离碱卟啉-富勒烯供体-受体系统中钾离子控制的分子间电子转移的转换

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摘要

Photoinduced electron transfer in intramolecularly interacting free-base porphyrin bearing one or four 18-crown-6 ether units at different positions of the porphyrin macrocycle periphery and pristine fullerene was investigated in polar benzonitrile and nonpolar oodichlorobenzene and toluene solvents.Owing to the presence of two modes of binding,stable dyads were obtained in which the binding constants,K,were found to range between 4.2 x 10~3 and 10.4 x 10~3 M~(-1)from fluorescence quenching data depending upon the location and number of crown ether entities on the porphyrin macrocycle and the solvent.Computational studies using the B3LYP/3-21G method were employed to arrive at the geometry and electronic structure of the intramolecular dyads.The energetics of the redox states of the dyads were established from cyclic voltammetric studies.Under the intramolecular conditions,both the steady-state and time-resolved emission studies revealed efficient quenching of the singlet excited free-base porphyrin in these dyads,and the measured rates of charge separation,K_(cs),were found to be in the 10~8-10~9 s~(-1)range.Nanosecond transient absorption studies were performed to characterize the electron-transfer products and to evaluate the charge-recombination rates.Shifting of the electron-transfer pathway from the intra-to intermolecular route was achieved by complexing potassium ions to the crown ether cavity(ies)in benzonitrile.This cation complexation weakened the intramolecular interactions between fullerene and the crown ether appended free-base porphyrin supramolecules,and under these conditions,intermolecular type interactions were mainly observed.Reversible inter-to intramolecular electron transfer was also accomplished by extracting the potassium ions of the complex with the addition of 18-crown-6.The present study nicely demonstrates the application of supramolecular methodology to control the excited-state electron-transfer path in donor-acceptor dyads.
机译:在极性苄腈和非极性邻二氯苯和甲苯溶剂中研究了分子内相互作用的游离碱卟啉中的光诱导电子转移,该游离碱卟啉在卟啉大环外围的不同位置带有一个或四个18-冠-6醚单元和原始富勒烯根据荧光猝灭数据,根据冠的位置和数目,获得了结合方式稳定的二联体,其中结合常数K在4.2 x 10〜3和10.4 x 10〜3 M〜(-1)之间。通过使用B3LYP / 3-21G方法进行的计算研究得出分子内二倍体的几何结构和电子结构,并通过循环伏安法建立了二倍体氧化还原态的能级。在分子内条件下,稳态和时间分辨发射研究均表明,单线态激发的自由-这些二元组中的碱性卟啉以及测得的电荷分离率K_(cs)在10〜8-10〜9 s〜(-1)范围内。进行了纳秒瞬态吸收研究以表征电子通过将钾离子络合到苄腈中的冠醚腔中来实现电子转移途径从分子内途径到分子间途径的转移,这种阳离子络合作用削弱了分子内的相互作用。在富勒烯和冠醚上连接的游离碱卟啉超分子之间,并且在这些条件下,主要观察到分子间类型的相互作用。还通过添加18冠提取复合物的钾离子来实现分子间至分子内的可逆转移-6。本研究很好地证明了超分子方法在控制供体-受体二元组中的激发态电子转移路径中的应用。

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