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Benzodifuroxazinones, a new class of heteroacene molecules for possible applications in organic electronics: Synthesis, electronic properties and crystal structure

机译:苯并呋喃并二嗪酮,一种可能在有机电子中应用的新型杂并苯分子:合成,电子性质和晶体结构

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摘要

A novel class of heteroacene molecules, benzodifuroxazin-4-ones, has been effectively synthesized by means of a thermally activated double cyclization reaction starting from amidic precursors. The new molecules were thermally and optically characterized, revealing an outstanding thermal stability to oxidation and an uncommon enhancement of fluorescent properties in solid state as compared to solution. As shown by single-crystal XRD analysis, the molecules crystallize in a face-to-face (π-stack) arrangement instead of the herringbone structure typical of the most acene derivatives. The electronic properties of both molecules and crystals have been investigated by means of a detailed Density Functional Theory computational analysis: very stable HOMO energies have been calculated and, from the band structure analysis, it is possible to suggest a preferential direction of charge transport along the.π-stacking direction. All the reported properties indicate this new class of heteroacene derivatives as interesting candidates for a possible application in organic electronics.
机译:通过从酰胺前体开始的热活化的双环化反应,已经有效地合成了新型的杂并苯分子,苯并二呋喃并嗪-4-酮。与溶液相比,这些新分子具有热和光学特性,显示出出色的抗氧化热稳定性和固态荧光性能的罕见提高。如单晶XRD分析所示,分子以面对面(π-堆栈)排列的形式结晶,而不是大多数并苯衍生物的人字形结构。已经通过详细的密度泛函理论计算分析研究了分子和晶体的电子性质:已经计算出非常稳定的HOMO能量,并且根据能带结构分析,有可能提出电荷沿着晶体迁移的优先方向。 .π堆叠方向。所有报道的性质表明,这类新的杂并苯衍生物是有机电子中可能应用的有趣候选物。

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