首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Tuning the electronic properties and the planarity degree in the p- extended TTF series: the prominent role of heteroatoms
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Tuning the electronic properties and the planarity degree in the p- extended TTF series: the prominent role of heteroatoms

机译:在P-扩展TTF系列中调整电子特性和平面度:杂原子的突出作用

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The main asset of small molecules for application in organic electronics lies in the tunability of their electronic properties owing to the precise control of their molecular design. Semiconducting properties in organic compounds are for instance closely linked to the molecular planarity degree, including when considering various redox states. Among those species, the -extended TTF (exTTF: 9,10-bis(1,3-dithiol-2-ylidene)-9,10-dihydroanthracene) presents fascinating redox and structural properties, which have been extensively studied in various fields of organic electronics. Here we show that S-exTTF, a sulfur enriched -isoelectronic dithieno analogue of pristine exTTF, synthesized through a Horner-Wadsworth-Emmons olefination, presents a much higher -donating ability than its exTTF homologue, associated to a higher planarity degree in the neutral or in the oxidized states. This is demonstrated by a combined experimental/theoretical approach. Solution studies (cyclic voltammetry and thin layer cyclic voltammetry) as well as solid-state analyses (X-ray structures of neutral S-exTTF and of the electrocrystallized cation radical salt ([S-exTTF][PF6]boldTHF/bold)) were performed, and systematically compared with those of the pristine exTTF analogue. An in-depth computational study, carried out on the neutral state as well as on oxidized states of S-exTTF, confirms the prominent role of intramolecular SS interactions in dictating a planar conformation, which is manifested by exceptionally short SS distances in the X-ray structure (2.82 angstrom, i.e., shorter, by far, than the sum of the van der Waals radii for S atoms (3.60 angstrom)), and in promoting HOMO destabilization compared to the parent exTTF.
机译:用于在有机电子器件中应用的小分子的主要资产在于它们的电子特性的可调性,由于其分子设计的精确控制。有机化合物中的半导体性质例如与分子平面度密切相关,包括在考虑各种氧化还原态。在这些物种中, - 扩展TTF(EXTTF:9,10-双(1,3-二硫醇-2- ylidene)-9,10-二氢蒽)呈现出迷人的氧化还原和结构性质,其在各种领域中被广泛研究有机电子。在这里,我们表明S-EXTTF,通过Horner-Wadsworth-Emmons Olefination合成的原始EXTTF的硫磺富集的-oOlectronic Dithieno类似物,其比其EXTTF同源物更高的能力,与中性更高的平面度相关或在氧化状态。这是通过组合的实验/理论方法来证明。溶液研究(循环伏安法和薄层循环伏安法)以及固态分析(中性S-EXTTF和电封闭阳离子盐的X射线结构([S-EXTTF] [PF6]&粗体& thf& /粗体&))与原始EXTTF类似物的那些进行,并系统地进行。在中性状态以及S-EXTTF的氧化状态下进行的深入计算研究证实了分子内SS相互作用在决定平面构象中的突出作用,这在X-中表现出异常短的SS距离射线结构(2.82埃,即短的S原子(3.60埃)的范德瓦拉径半径的较短,较短,促进与父母EXTTF相比促进HOMO稳定化。

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