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首页> 外文期刊>ACS applied materials & interfaces >Strongly Coupled Phenazine-Porphyrin Dyads: Light-Harvesting Molecular Assemblies with Broad Absorption Coverage
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Strongly Coupled Phenazine-Porphyrin Dyads: Light-Harvesting Molecular Assemblies with Broad Absorption Coverage

机译:强耦合的苯吡喃卟啉二元:光收获分子组件,具有宽吸收覆盖率

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摘要

The development of light-harvesting architectures with broad absorption coverage in the visible region continues to be an important research area in the field of artificial photosynthesis. Here, we introduce a new class of ethynyl-linked panchromatic dyads composed of dibenzophenazines coupled ortho and meta to tetrapyrroles with an anchoring group that can be grafted onto metal oxide surfaces. Quantum chemical calculations and photophysical measurements of the synthesized materials reveal that both of the dibenzophenazine dyads absorb broadly from 300 to 636 nm and exhibit absorption bands different from those of the constitu ent chromophore units. Moreover, the different points of attachment of dibenzophenazines to tetrapyrroles give different absorption profiles which computations suggest result from differences in the planarity of the two dyads. Applicability of the dyads in artificial photosynthesis systems was assessed by their incorporation and characterization of their performance in dye-sensitized solar cells.
机译:在可见区域中具有广泛吸收覆盖的光收获架构的发展仍然是人造光合作用领域的重要研究区域。在这里,我们介绍一类新的乙炔基环状二十多种与二苯并噻吩偶联的邻位和元至四吡咯与锚定组组成,该锚固基团可以接枝到金属氧化物表面上。量子化学计算和合成材料的光物理测量表明,二苯并噻吩二元二聚体的吸收广泛从300〜636nm吸收,并表现出与Constitu Ent Chromophore单元的吸收带。此外,二苯并苯噻吩与四吡咯的不同点产生不同的吸收曲线,该计算表明两种二元的平面症的差异导致。通过其在染料敏化太阳能电池中的掺入和表征它们的性能来评估Dyads在人造光合作用系统中的适用性。

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