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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Annulation of Tetrathiafulvalene to the Bay Region of Perylenediimide: Fast Electron-Transfer Processes in Polar and Nonpolar Solvents
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Annulation of Tetrathiafulvalene to the Bay Region of Perylenediimide: Fast Electron-Transfer Processes in Polar and Nonpolar Solvents

机译:四硫富瓦烯到Per二酰亚胺湾区的环化:极性和非极性溶剂中的快速电子转移过程

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摘要

A tetrathiafulvalene donor has been annulated to the bay region of perylenediimide through a 1H-benzo-[d]pyrrolo[1,2-a]imidazol-1-one spacer affording an extended π-conjugated molecular dyad (TTF-PDI). To gain insight into its ground- and excited-state electronic properties, the reference compound Ph-PDI has been prepared via a direct Schiff-base condensation of N,N'-bis(l-octylnonyl) benzoperylene-1',2':3,4;9,10-hexacarboxylic-1',2'-anhydride-3,4:9,10-bis(imide) with benzene- 1,2-diamine. Both the experimental and the computational (DFT) results indicate that TTF-PDI exhibits significant intramolecular electronic interactions giving rise to an efficient photoinduced charge-separa-tion process. Free-energy calculations verify that the light-induced process from TTF to the singlet-excited state of PDI is exothermic in both polar and nonpolar solvents. Fast adiabatic electron-transfer processes of a compactly fused, π-conjugated TTF-PDI dyad in benzonitrile, 2-methyltetrahydrofuran, anisole and toluene were observed by femtosecond transient absorption spectral measurements. The lifetimes of radical-ion pairs slightly increase with decreasing the solvent polarities, suggesting that the charge-recombination occurs in the Marcus inverted region. By utilizing the nanosecond transient absorption technique, the intermolecular electron-transfer process in a mixture of TTF-diamine/Ph-PDI has been observed via the triplet excited PDI for the first time.
机译:通过1H-苯并-[d]吡咯并[1,2-a]咪唑-1-酮间隔基将四硫富瓦烯供体环化至per二酰亚胺的海湾区域,从而提供扩展的π-共轭分子二元体(TTF-PDI)。为了深入了解其基态和激发态电子性质,参考化合物Ph-PDI是通过N,N'-双(1-辛基壬基)苯并per-1-1,2'的直接席夫碱缩合制备的: 3,4; 9,10-六羧酸-1',2'-酸酐-3,4:9,10-双(酰亚胺)与苯-1,2-二胺。实验和计算(DFT)结果均表明,TTF-PDI表现出显着的分子内电子相互作用,从而产生了有效的光致电荷分离过程。自由能计算验证了从TTF到PDI单线激发态的光诱导过程在极性和非极性溶剂中均放热。飞秒瞬态吸收光谱法观察到了在苯甲腈,2-甲基四氢呋喃,苯甲醚和甲苯中紧密稠合的π共轭TTF-PDI二元化合物的快速绝热电子转移过程。自由基离子对的寿命随着溶剂极性的降低而略有增加,这表明电荷复合发生在Marcus反向区域中。通过利用纳秒瞬态吸收技术,首次通过三重激发的PDI观察到了TTF-二胺/ Ph-PDI混合物中的分子间电子转移过程。

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