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首页> 外文期刊>Chemical science >Panchromatic light funneling through the synergy in hexabenzocoronene–(metallo)porphyrin–fullerene assemblies to realize the separation of charges
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Panchromatic light funneling through the synergy in hexabenzocoronene–(metallo)porphyrin–fullerene assemblies to realize the separation of charges

机译:通过六苯并聚酮 - (金属)卟啉 - 富勒烯组件的协同作用,实现了普罗林 - 富勒烯组件的分离

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摘要

Here, we present a novel butadiyne-linked HBC-ethynyl-porphyrin dimer, which exhibits in the ground state strong absorption cross sections throughout the UV and visible ranges of the solar spectrum. In short, a unidirectional flow of excited state energy from the HBC termini to the (metallo)porphyrin focal points enables concentrating light at the latter. Control over excitonic interactions within, for example, the electron-donating porphyrin dimers was realized by complexation of bidentate ligands to set up panchromatic absorption that extends all the way into the near-infrared range. The bidentate binding motif was then exploited to create a supramolecular electron donor–acceptor assembly based on a HBC-ethynyl-porphyrin dimer and an electron accepting bis(aminoalkyl)-substituted fullerene. Of great relevance is the fact that charge separation from the photoexcited HBC-ethynyl-porphyrin dimer to the bis(aminoalkyl)-substituted fullerene is activated not only upon photoexciting the HBCs in the UV as well as the (metallo)porphyrins in the visible but also in the NIR. Implicit is the synergetic interplay of energy and charge transfer in a photosynthetic mimicking manner. The dimer and bis-HBC-ethynyl-porphyrin monomers, which serve as references, were probed by means of steady-state as well as time-resolved optical spectroscopies, including global target analyses of the time-resolved transient absorption data.
机译:在此,我们提出了一种新的丁酰基链接的HBc-乙炔 - 卟啉二聚体,其在整个UV和太阳光谱的可见范围内呈现在地态强吸收横截面中。简而言之,从HBC末端到(金属)卟啉焦点的激发状态能量的单向流动使得能够集中在后者处。通过使二齿配体的络合络合来建立延伸进入近红外范围的全色吸收来实现电子提供的卟啉二聚体内的激动式卟啉二聚体。然后利用双齿结合基质基于HBc-乙炔基 - 卟啉二聚体和电子接受双(氨基烷基) - 取代的富勒烯来制造超分子电子给体 - 受体组件。大的相关性是,不仅在光屏蔽UV中的HBC以及可见的(Metallo)卟啉,而且同样在NIR中。隐含是以光合模拟方式的能量和电荷转移的协同相互作用。通过稳态以及时间分辨光谱法探测用作参考的二聚体和双-HBc-乙炔基 - 卟啉单体,包括时间分辨的瞬态吸收数据的全局靶标分析。

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