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On–off switch of charge-separated states of pyridine-vinylene-linked porphyrin–C60 conjugates detected by EPR

机译:EPR检测到的吡啶-乙烯基连接的卟啉-C60共轭物的电荷分离状态的开-关开关

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摘要

The design, synthesis, and electronic properties of a new series of D–π–A conjugates consisting of free base (H2P) and zinc porphyrins (ZnP) as electron donors and a fullerene (C60) as electron acceptor, in which the two electroactive entities are covalently linked through pyridine-vinylene spacers of different lengths, are described. Electronic interactions in the ground state were characterized by electrochemical and absorption measurements, which were further supported with theoretical calculations. Most importantly, charge-transfer bands were observed in the absorption spectra, indicating a strong push–pull behavior. In the excited states, electronic interactions were detected by selective photoexcitation under steady-state conditions, by time-resolved fluorescence investigations, and by pump probe experiments on the femto-, pico-, and nanosecond time scales. Porphyrin fluorescence is quenched for the different D–π–A conjugates, from which we conclude that the deactivation mechanisms of the excited singlet states are based on photoinduced energy- and/or electron transfer processes between H2P/ZnP and C60, mediated through the molecular spacers. The fluorescence intensity decreases and the fluorescence lifetimes shorten as the spacer length decreases and as the spacer substitution changes. With the help of transient absorption spectroscopy, the formation of charge-separated states involving oxidized H2P/ZnP and reduced C60 was confirmed. Lifetimes of the corresponding charge-separated states, which ranged from ∼400 picoseconds to 165 nanoseconds, depend on the spacer length, the spacer substitution, and the solvent polarity. Interestingly, D–π–A conjugates containing the longest linkers did not necessarily exhibit the longest charge-separated state lifetimes. The distances between the electron donors and the acceptors were calculated by molecular modelling. The longest charge-separated state lifetime corresponded to the D–π–A conjugate with the longest electron donor–acceptor distance. Likewise, EPR measurements in frozen media revealed charge separated states in all the D–π–A conjugates investigated. A sharp peak with g values ∼2.000 was assigned to reduced C60, while a broader, less intense signal (g ∼ 2.003) was assigned to oxidized H2P/ZnP. On–off switching of the formation and decay of the charge-separated states was detected by EPR at 77 K by repeatedly turning the irradiation source on and off.
机译:新的D–π–A共轭物系列的设计,合成和电子性质,其由游离碱(H2P)和卟啉锌(ZnP)作为电子给体,以及富勒烯(C60)作为电子受体,其中两个电活性描述了通过不同长度的吡啶-亚乙烯基间隔基共价连接的实体。基态的电子相互作用通过电化学和吸收测量来表征,并得到理论计算的进一步支持。最重要的是,在吸收光谱中观察到了电荷转移带,表明其强烈的推挽行为。在激发态下,通过在稳态条件下进行选择性光激发,通过时间分辨荧光研究以及通过在飞秒,皮秒和纳秒级的泵浦探针实验来检测电子相互作用。对于不同的D–π–A共轭物,卟啉荧光被淬灭,由此我们得出结论,激发单重态的失活机理是基于H2P / ZnP和C60之间通过分子介导的光诱导的能量和/或电子转移过程。垫片。随着间隔物长度的减少和间隔物取代的改变,荧光强度降低并且荧光寿命缩短。借助于瞬态吸收光谱法,证实了形成了氧化的H2P / ZnP和还原的C60的电荷分离态。相应的电荷分离态的寿命在约400皮秒至165纳秒之间,取决于间隔物的长度,间隔物的取代和溶剂的极性。有趣的是,含有最长连接子的D–π–A共轭物不一定具有最长的电荷分离态寿命。电子给体和受体之间的距离通过分子建模计算。最长的电荷分离态寿命对应于D–π–A共轭物,且电子施主-受体距离最长。同样,在冷冻介质中的EPR测量揭示了所有研究的D–π–A共轭物中的电荷分离状态。 g值为〜2.000的尖峰被指定为还原的C60,而氧化的H2P / ZnP被指定为更宽,强度较小的信号(g〜2.003)。 EPR在77 K下通过反复打开和关闭照射源来检测电荷分离态的形成和衰变的开-关切换。

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