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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Fluorinated Fullerenes:Sources of Donor-Acceptor Dyads with [18]Trannulene Acceptors for Energy-and Electron-Transfer Reactions
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Fluorinated Fullerenes:Sources of Donor-Acceptor Dyads with [18]Trannulene Acceptors for Energy-and Electron-Transfer Reactions

机译:氟化富勒烯:具有[18]戊二烯受体的给体-受体二元化合物的能量和电子转移反应来源

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摘要

Fine-tuned control over the donor strength in a series of trannulenes-based donor-acceptor ensembles is used to alter the deactivation path of the photoexcited-state chromophore and to modulate the rates of intramolecular electron transfer.For the first time,a detailed analysis of emission spectra,time-dependent spectroscopic measurements,and electrochemistry prove spectroscopically and kinetically that trannulenes can serve,in a manner similar to C_(60)and C_(60)monoadducts,as both electron and also as energy acceptor in donor-acceptor ensembles,producing widely different electron-transfer regimes.This investigation also shows that the integration of trannulenes,as a versatile electron-acceptor building block,consistently produces charge recombination in the inverted Marcus region.
机译:在一系列基于对苯二酚的供体-受体集成体中,对供体强度的精细控制可用于改变光激发态发色团的失活路径并调节分子内电子转移的速率。这是首次,详细分析发射光谱,随时间变化的光谱测量结果以及电化学反应在光谱学和动力学方面证明了对戊二烯可以以类似于C_(60)和C_(60)单加合物的方式用作电子和供体-受体集合体中的能量受体这项研究还表明,作为一种通用的电子受体构建体,对苯二酚的整合始终在倒置的马库斯区产生电荷复合。

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