首页> 外文OA文献 >Porphyrin-beta-Oligo-Ethynylenephenylene-60Fullerene Triads: Synthesis and Electrochemical and Photophysical Characterization of the New Porphyrin-Oligo-PPE-60Fullerene Systems
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Porphyrin-beta-Oligo-Ethynylenephenylene-60Fullerene Triads: Synthesis and Electrochemical and Photophysical Characterization of the New Porphyrin-Oligo-PPE-60Fullerene Systems

机译:卟啉-β-低聚-亚乙撑-亚苯基60富勒烯三联体:新型卟啉-低聚-PPE- 60富勒烯体系的合成,电化学和光物理性质

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摘要

The synthesis and electrochemical and photophysical studies of new electron donor-acceptor arrays, bearing porphyrins covalently linked to fullerene, are described. In the reported investigation, phenyleneethynylene subunits were chosen as a linking bridge to guarantee a high conjugation degree between the donor (i.e., porphyrin), the molecular bridge (i.e., oligo-phenyleneethynylenes), and the acceptor (i.e., fullerene). To enhance the electronic interactions through the extended pi-system, the molecular bridge has been directly linked to the beta-pyrrole position of the porphyrin ring, generating a new example of donor-bridge-acceptor systems where, for the first time, the meso-phenyl ring of the macrocycle is not used to hold the "bridge" between porphyrin and fullerene moieties. This modification allows altering the chemical and physical properties of the tetrapyrrole ring. Steady-state and time-resolved fluorescence studies together with transient absorption measurements reveal that in nonpolar media (i.e., toluene) transduction of singlet excited-state energy governs the excited-state deactivation, whereas in polar media (i.e., tetrahydrofuran) charge transfer prevails generating a long-lived radical ion pair state. The lifetimes hereof range from 300 to 700 ns. The study also sheds light onto the wirelike behavior of the oligo-phenyleneethynylene bridges, for which a damping factor (beta) of 0.11 +/- 0.05 angstrom(-1) has been determined in the current study.
机译:描述了带有卟啉共价连接富勒烯的新型电子供体-受体阵列的合成以及电化学和光物理研究。在报道的研究中,选择亚苯基亚乙炔基亚基作为连接桥,以确保供体(即卟啉),分子桥(即低聚亚苯基亚乙炔基)和受体(即富勒烯)之间的高缀合度。为了通过扩展的pi系统增强电子相互作用,分子桥已直接连接至卟啉环的β-吡咯位置,从而生成了供体桥受体系统的新实例,其中首次出现了内消旋大环的-苯基环不用于保持卟啉和富勒烯部分之间的“桥”。该修饰允许改变四吡咯环的化学和物理性质。稳态和时间分辨荧光研究以及瞬态吸收测量表明,在非极性介质(即甲苯)中,单线态激发态能量的传导决定了激发态的失活,而在极性介质(即四氢呋喃)中则占主导地位生成长寿命的自由基离子对状态。其寿命为300到700 ns。这项研究还为低聚亚苯基乙炔桥的线状行为提供了线索,目前的研究已确定该桥的阻尼系数(β)为0.11 +/- 0.05埃(-1)。

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