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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Multi-Triphenylamine-Substituted Porphyrin-Fullerene Conjugates as Charge Stabilizing 'Antenna-Reaction Center' Mimics
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Multi-Triphenylamine-Substituted Porphyrin-Fullerene Conjugates as Charge Stabilizing 'Antenna-Reaction Center' Mimics

机译:多三苯胺取代的卟啉-富勒烯共轭作为电荷稳定的“天线反应中心”模拟物

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摘要

A new concept of charge stabilization via delocalization of the pi-cation radical species over the donor macrocycle substituents in a relatively simple donor-acceptor bearing multimodular conjugates is reported. The newly synthesized multimodular systems were composed of three covalently linked triphenylamine entities at the meso position of the porphyrin ring and one fulleropyrrolidine at the fourth meso position. The triphenylamine entities were expected to act as energy transferring antenna units and to enhance the electron donating ability of both free-base and zinc(II) porphyrin derivatives of these pentads. Appreciable electronic interactions between the meso-substituted triphenylamine entities and the porphyrin pi-system were observed, and as a consequence, these moieties acted together as an electron-donor while the fullerene moiety acted as an electron-acceptor in the multimodular conjugates. In agreement with the spectral and electrochemical results, the computational studies performed by the DFT B3LYP/3-21G(*) method revealed delocalization of the frontier highest occupied molecular orbital (HOMO) over the triphenylamine entities in addition to the porphyrin macrocycle. Free-energy calculations suggested that the light-induced processes from the singlet excited state of porphyrins are exothermic in the investigated multimodular conjugates. The occurrence of photoinduced charge-separation and charge-recombination processes was confirmed by the combination of time-resolved fluorescence and nanosecond transient absorption spectral measurements. Charge-separated states, on the order of a few microseconds, were observed as a result of the delocealization of the pi-cation radical species over the porphyrin macrocycle and the meso-substituted triphenylamine entities. The present study successfully demonstrates a novel approach of charge-stabilization in donor-acceptor multimodular conjugates.
机译:报道了通过在相对简单的带有多模块共轭物的供体-受体上通过π-阳离子自由基种类在供体大环取代基上的离域化而使电荷稳定的新概念。新合成的多模块系统由在卟啉环的内消旋位置上的三个共价连接的三苯胺实体和在第四个内消旋位置上的一个全吡咯烷环组成。预期三苯胺实体可作为能量转移天线单元,并增强这些五单元组的游离碱和锌(II)卟啉衍生物的给电子能力。观察到介观取代的三苯胺实体与卟啉π系统之间存在明显的电子相互作用,结果,这些部分共同充当电子给体,而富勒烯部分充当多模块共轭物中的电子受体。与光谱和电化学结果一致,通过DFT B3LYP / 3-21G(*)方法进行的计算研究表明,除了卟啉大环化合物外,在三苯胺实体上前沿最高占据分子轨道(HOMO)的离域。自由能计算表明,在研究的多模块偶联物中,卟啉的单线激发态的光诱导过程是放热的。通过时间分辨荧光和纳秒瞬态吸收光谱测量相结合,确认了光诱导电荷分离和电荷复合过程的发生。由于卟啉大环上的正阳离子基团和内消旋取代的三苯胺实体发生了脱阳离子化,因此观察到了数微秒级的电荷分离状态。本研究成功地证明了供体-受体多模块共轭物中电荷稳定的新方法。

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