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Enhancement of Energy Transfer Efficiency with Structural Control of Multichromophore Light‐Harvesting Assembly

机译:具有多晶光学射击组件的结构控制能量转移效率的增强

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摘要

Multichromophore systems (MCSs) are envisioned as building blocks of molecular optoelectronic devices. While it is important to understand the characteristics of energy transfer in MCSs, the effect of multiple donors on energy transfer has not been understood completely, mainly due to the lack of a platform to investigate such an effect systematically. Here, a systematic study on how the number of donors (nD) and interchromophore distances affect the efficiency of energy transfer (ηFRET) is presented. Specifically, ηFRET is calculated for a series of model MCSs using simulations, a series of multiporphyrin dendrimers with systematic variation of nD and interdonor distances is synthesized, and ηFRETs of those dendrimers using transient absorption spectroscopy are measured. The simulations predict ηFRET in the multiporphyrin dendrimers well. In particular, it is found that ηFRET is enhanced by donor‐to‐donor energy transfer only when structural heterogeneity exists in an MCS, and the relationships between the ηFRET enhancement and the structural parameters of the MCS are revealed.
机译:将多晶晶体系(MCS)设想为分子光电器件的构建块。虽然了解MCS中能量转移的特征非常重要,但多个捐赠者对能量转移的影响尚未完全理解,主要是由于缺乏系统地调查这种效果的平台。在这里,有关捐赠者数量的系统研究(nd)和间同学光学距离影响能量转移的效率(η饰品)呈现出烦恼。具体而言,η使用模拟的一系列型号MCS计算FRET,这是一系列多硼素树枝状大分子,具有系统变化的一系列D和interdonor距离合成,η测量使用瞬时吸收光谱的那些树枝状过敏仪的褶皱。模拟预测η在多硼素树枝状大分子中的褶皱。特别是,发现η仅当在MCS中存在结构异质性时,施送到捐助者能量转移增强了FRET,以及η之间的关系揭示了MCS的褶皱增强和结构参数。

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