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Charge transfer through cross-hyperconjugated versus cross-π-conjugated bridges: an intervalence charge transfer study

机译:通过交叉超共轭桥与交叉π共轭桥的电荷转移:间隔电荷转移研究

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Recently there has been much interest in electron transferand transportthrough cross-conjugated molecules as interesting test cases for the interplay between molecular and electronic structure as well as potential motifs in the design of new compounds for molecular electronics. Herein we expand on this concept and present the synthesis and characterization of a series of four organic mixed-valence dyads to probe the effect of the bridge structure on the electronic coupling. The electronic coupling between two triarylamine units could be mediated either by cross-hyperconjugation through a saturated ER2 bridge (E = C or Si, R = alkyl or silyl group), or via a cross-conjugated π-system. The aim of the study is to compare the electron transfer through the various saturated bridges to that of a cross-π-conjugated bridge. The electronic coupling in these mixed-valence compounds was determined by analysis of intervalence charge transfer bands, and was found to be in the range of 100-400 cm~(-1). A complementary DFT and TD-DFT study indicated that the electronic coupling in the dyads with saturated ER2 segments is highly conformer dependant. Furthermore, the calculations showed that two types of interactions contribute to the electronic coupling; a through-bond cross-(hyper)conjugation mechanism and a through-space mechanism. Taken together, these findings suggest the possibility for new architectures for molecular electronics applications utilizing cross-hyperconjugation through properly selected saturated segments which have comparable electron transfer characteristics as regular cross-7r-conjugated molecules.
机译:近年来,人们对跨共轭分子的电子转移和传输非常感兴趣,这是分子和电子结构之间相互作用以及分子电子新化合物设计中潜在基序的有趣测试案例。在本文中,我们扩展了这一概念,并提出了一系列四个有机混合价二元化合物的合成和表征,以探讨桥结构对电子耦合的影响。两个三芳基胺单元之间的电子偶联可通过饱和ER2桥(E = C或Si,R =烷基或甲硅烷基)的交叉超共轭作用或通过交叉共轭π系统介导。该研究的目的是将通过各种饱和桥的电子转移与交叉π共轭桥的电子转移进行比较。通过分析间隔电荷转移带确定了这些混合价化合物中的电子耦合,发现其在100-400 cm〜(-1)范围内。互补的DFT和TD-DFT研究表明,具有饱和ER2片段的二联体中的电子耦合高度依赖构象异构体。此外,计算表明,两种类型的相互作用有助于电子耦合。贯穿键的交叉(超)共轭机制和贯穿空间的机制。综上所述,这些发现暗示了分子电子应用的新架构的可能性,即通过交叉超共轭通过适当选择的饱和链段进行交叉共轭,该饱和链段具有与常规的交叉7r共轭分子相当的电子传递特性。

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