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Hierarchical Corannulene-Based Materials: Energy Transfer and Solid-State Photophysics

机译:基于分层的金刚素类材料:能量转移和固态的光学药物

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摘要

We report the first example of a donor-acceptor corannulene-containing hybrid material with rapid ligand-to-ligand energy transfer (ET). Additionally, we provide the first time-resolved photoluminescence (PL) data for any corannulene-based compounds in the solid state. Comprehensive analysis of PL data in combination with theoretical calculations of donor-acceptor exciton coupling was employed to estimate ET rate and efficiency in the prepared material. The ligand-to-ligand ET rate calculated using two models is comparable with that observed in fullerene-containing materials, which are generally considered for molecular electronics development. Thus, the presented studies not only demonstrate the possibility of merging the intrinsic properties of p-bowls, specifically corannulene derivatives, with the versatility of crystalline hybrid scaffolds, but could also foreshadow the engineering of a novel class of hierarchical corannulene-based hybrid materials for optoelectronic devices.
机译:我们报道了具有快速配体与配体能量转移(ET)的含含供体含量的杂化材料的第一实例。 另外,我们为固态中的任何氨基丙烯类化合物提供第一种时间分辨的光致发光(PL)数据。 使用与供体 - 受体激子偶联的理论计算的PL数据综合分析用于估算制备的材料中的ET率和效率。 使用两种型号计算的配体至配体ET率与含富勒烯材料中观察到的相当,通常考虑用于分子电子发育。 因此,所提出的研究不仅证明了利用晶体杂交支架的多功能性合并了对P碗,特别是磺酸烯衍生物的固有性质的可能性,而且还可以预先前列组的基于分层磺胺烯类的混合材料的工程 光电器件。

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